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Information Processing Device, Terminal Device, Information Processing Method, And Recording Medium

Abstract: The information processing device according to the present invention is provided with: a determination unit which determines the level of trustworthiness of a tourist on the basis of history information relating to a first overseas trip made by the tourist; and an output unit which, when the tourist is scheduled to make a second overseas trip, outputs information relating to the second overseas trip on the basis of said level of trustworthiness, which is associated with identification information of the tourist.

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Patent Information

Application #
Filing Date
29 September 2021
Publication Number
35/2022
Publication Type
INA
Invention Field
COMPUTER SCIENCE
Status
Email
archana@anandandanand.com
Parent Application

Applicants

NEC CORPORATION
7-1, Shiba 5-chome, Minato-ku, Tokyo 1088001

Inventors

1. INOUE, Akira
c/o NEC Corporation, 7-1, Shiba 5-chome, Minato-ku, Tokyo 1088001
2. IWATA, Atsushi
c/o NEC Corporation, 7-1, Shiba 5-chome, Minato-ku, Tokyo 1088001
3. FUDEMOTO, Kunio
c/o NEC Corporation, 7-1, Shiba 5-chome, Minato-ku, Tokyo 1088001

Specification

Title of invention: Information processing device, terminal device, information processing method, and recording medium
Technical field
[0001]
The present invention relates to an information processing device, a terminal device, an information processing method, and a recording medium.
Background technology
[0002]
Patent Document 1 discloses an immigration inspection system that determines whether a traveler can use an automated gate at a KIOSK terminal.
prior art documents
patent literature
[0003]
Patent document 1: JP 2015-222459 A
SUMMARY OF THE INVENTION
Problems to be Solved by the Invention
[0004]
In the immigration examination system described in Patent Document 1, travelers who are not eligible to use the automated gates, for example, even if they are people who have traveled many times as good travelers, they must go through the same screening process as first-time travelers. not. For this reason, the immigration examination system has a problem in that the examination procedures for travelers cannot proceed efficiently.
[0005]
Therefore, in view of the above-mentioned problems, it is an object of the present invention to provide an information processing device, a terminal device, an information processing method, and a recording medium that can streamline various examination procedures for travelers.
Means to solve problems
[0006]
According to one aspect of the invention, a determination unit for determining a creditworthiness of the passenger based on historical information regarding the passenger's first trip; and an output unit configured to output the second travel-related information based on the information processing device.
[0007]
According to another aspect of the present invention, an obtaining unit for obtaining the creditworthiness of the passenger based on history information related to the passenger's first trip; and an output unit that outputs the second travel-related information based on creditworthiness.
[0008]
According to yet another aspect of the invention, determining the creditworthiness of the passenger based on historical information relating to the passenger's first trip; and outputting information about said second travel based on creditworthiness.
[0009]
According to yet another aspect of the present invention, a computer is provided with the steps of: determining a creditworthiness of said passenger based on historical information relating to a first trip of said passenger; and outputting the information on the second travel based on the obtained credit.
Effect of the invention
[0010]
According to the present invention, an information processing device, a terminal device, an information processing method, and a recording medium that can streamline various examination procedures for travelers are provided.
Brief description of the drawing
[0011]
1 is a schematic diagram showing an example of the overall configuration of a passenger control system in a first embodiment; FIG.
2A is a diagram showing an example of information stored in a user information DB in the first embodiment; FIG.
2B is a diagram showing an example of information stored in a travel/authentication history information DB in the first embodiment; FIG.
2C is a diagram showing an example of information stored in a credit information DB in the first embodiment; FIG.
3 is a block diagram showing an example hardware configuration of a management server in the first embodiment; FIG.
4 is a block diagram showing an example of the hardware configuration of the check-in terminal in the first embodiment; FIG.
5 is a block diagram showing an example of the hardware configuration of a business terminal in the first embodiment; FIG.
6 is a block diagram showing an example of the hardware configuration of the security inspection device in the first embodiment; FIG.
7 is a block diagram showing an example of the hardware configuration of the automated gate device according to the first embodiment; FIG.
8 is a block diagram showing an example of the hardware configuration of the boarding gate device in the first embodiment; FIG.
9 is a block diagram showing an example of the hardware configuration of the entrance gate terminal in the first embodiment; FIG.
10 is a block diagram showing an example of a hardware configuration of an exit gate terminal in the first embodiment; FIG.
11 is a flowchart showing an example of processing of a management server in the first embodiment; FIG.
12 is a sequence diagram showing an example of processing of the check-in terminal and management server in the first embodiment; FIG.
13 is a diagram showing an example of a screen displayed by the check-in terminal in the first embodiment; FIG.
14 is a sequence diagram showing an example of processing of the security inspection device and the management server in the first embodiment; FIG.
15 is a sequence diagram showing an example of processing of the automated gate device and management server in the first embodiment; FIG.
16 is a sequence diagram showing an example of processing of the boarding gate device and management server in the first embodiment; FIG.
17 is a sequence diagram showing an example of processing of the automated gate device and the management server in the first embodiment; FIG.
18 is a sequence diagram showing an example of processing of the automatic customs gate device and management server in the first embodiment; FIG.
19 is a sequence diagram showing an example of processing of the business terminal and management server in the first embodiment; FIG.
20 is a diagram showing an example of a screen displayed by a business terminal in the first embodiment; FIG.
21 is a diagram showing an example of a screen displayed by a business terminal in the first embodiment; FIG.
22 is a diagram showing an example of a screen displayed by a business terminal in the first embodiment; FIG.
23 is a flow chart showing an example of processing of a management server in the second embodiment; FIG.
24 is a schematic diagram illustrating a method of learning processing in the second embodiment; FIG.
25 is a flow chart showing an example of processing of a management server in the second embodiment; FIG.
26 is a schematic diagram showing an example of the overall configuration of a passenger control system in a third embodiment; FIG.
27 is a block diagram showing an example of the hardware configuration of a user terminal in the third embodiment; FIG.
28 is a sequence diagram showing an example of processing of a management server and a user terminal in the third embodiment; FIG.
29 is a diagram showing an example of a screen displayed by a user terminal in the third embodiment; FIG.
30 is a diagram showing an arrangement example of signage terminals in the fourth embodiment. FIG.
31 is a block diagram showing an example of a hardware configuration of a signage terminal according to a fourth embodiment; FIG.
32 is a sequence diagram showing an example of processing of a signage terminal and a management server in the fourth embodiment; FIG.
33 is a diagram showing an example of a screen displayed by a signage terminal in the fourth embodiment; FIG.
34 is a block diagram showing functions of an information processing apparatus according to a fifth embodiment; FIG.
35 is a block diagram showing functions of a terminal device in a sixth embodiment; FIG.
MODE FOR CARRYING OUT THE INVENTION
[0012]
Exemplary embodiments of the present invention will be described below with reference to the drawings. In the drawings, similar or corresponding elements are denoted by the same reference numerals, and descriptions thereof may be omitted or simplified.
[0013]
[First embodiment]
FIG. 1 is a schematic diagram showing an example of the overall configuration of a passenger control system 1 according to this embodiment. For example, the passenger control system 1 according to the present embodiment is used by an aircraft scheduled to leave the first country from the airport DA of the first country and enter the second country from the airport AA of the second country different from the first country. It is an information processing system that supports a series of examinations conducted in a first country and a second country for a person (traveler) U. The passenger control system 1 is operated by, for example, a public institution such as an immigration control bureau, or a trustee entrusted with operations by the institution.
[0014]
In the passenger control system 1 of this embodiment, a check-in terminal 20, a security inspection device 30, an automated gate device 40, a boarding gate device 50, an automated gate device 60, an automatic customs gate device 70, and business terminals 22, 32, 42, 52, 62, 80 are connected via a network NW. The network NW is composed of a LAN (Local Area Network) including an airport private communication network, a WAN (Wide Area Network), a mobile communication network, and the like. The connection method is not limited to a wired method, and may be a wireless method. In Fig. 1, for convenience of explanation, the airport DA of the departure country (first country) is equipped with equipment used up to departure, and the airport AA of the arrival country (second country) is equipped only with equipment used up to entry. Illustrated.
[0015]
The management server 10 is an information processing device that manages various examinations when the user U enters and leaves the country. The management server 10 is installed, for example, in a facility of an airport company that operates an airport DA or an airport AA, an airline company, or the like. Note that the management server 10 does not have to be a single server, and may be configured as a server group including a plurality of servers. For example, a server that performs some functions of the management server 10 may be installed in the first country, and another server that performs the remaining functions of the management server 10 may be installed in the second country.
[0016]
Also, as shown in Figure 1, the examination at the airport DA of the first country is carried out sequentially in the four certification stages ST1 to ST4 indicated by the dashed lines. Also, the examination at the airport AA in the second country is sequentially carried out in two certification stages ST5 and ST6 indicated by broken lines. The relationship between each device and the authentication stage will be described below.
[0017]
The check-in terminal 20 is a self-service terminal for the user U to carry out check-in procedures by himself/herself. The check-in terminal 20 is installed in the check-in lobby in the airport. The business terminal 22 is installed at the manned counter in the check-in lobby. The staff member S1 uses the business terminal 22 to carry out the user U's check-in procedure. The check-in procedure is a procedure for registering at least information for identifying the user U who is scheduled to board the aircraft. Specifically, it is a procedure for inputting user information including user U's identification information and boarding information. Hereinafter, the check-in procedure performed in the check-in lobby will be referred to as "authentication stage ST1". After being authenticated in the authentication stage ST1, the user U moves to the security checkpoint.
[0018]
The security inspection device 30 is a device that is installed at the security checkpoint in the airport and uses a metal detector to check whether the user U is wearing metal objects that can be dangerous. The security inspection device 30 includes, in addition to the metal detector, an X-ray inspection device or the like that uses X-rays to check the presence or absence of dangerous items in carry-on baggage or the like. After completing the check-in procedure, the user U undergoes the security inspection procedure by the security inspection device 30 at the security inspection area. The business terminal 32 is installed at a manned counter at the security checkpoint. The staff member S2 uses the business terminal 32 to carry out security inspection procedures for the user U. Hereinafter, the security inspection procedure carried out at the security checkpoint will be referred to as "authentication stage ST2". After being authenticated in the authentication stage ST2, the user U moves to the immigration inspection area.
[0019]
The automated gate device 40 is a device that is installed at the immigration inspection area in the airport and automatically performs the immigration inspection procedures for the user U. The users U who can use the departure examination procedure by the automated gate device 40 may be limited to those who have pre-registered for the use of the automated gate device 40 . In addition, the business terminal 42 is installed at a manned counter in the immigration inspection area. The staff member S3 uses the business terminal 42 to carry out the immigration procedures for the user U. Hereinafter, the departure examination procedure carried out at the departure examination area will be referred to as "authentication stage ST3". After being authenticated in the authentication stage ST3, the user U moves to the departure area.
[0020]
The boarding gate device 50 is a traffic control device installed at each boarding gate. The boarding gate device 50 confirms that the user U is a passenger of an aircraft that can board from the boarding gate. The business terminal 52 is installed at the manned counter at the boarding gate. The staff member S4 uses the business terminal 52 to perform boarding procedures for the user U to board the aircraft. The boarding procedure performed at the boarding gate is hereinafter referred to as "authentication stage ST4". User U is authenticated in authentication stage ST4 Upon receipt, board the aircraft and depart the first country.
[0021]
The automated gate device 60 is a device that is installed at the immigration inspection area in the airport and automatically performs the immigration inspection procedures for the user U. Users U who can use the automated gate device 60 may be limited to those who have pre-registered to use the automated gate device 60 . In addition, the business terminal 62 is installed at a manned counter in the immigration inspection area. The staff member S5 uses the business terminal 62 to carry out immigration procedures for the user U. Hereinafter, the immigration examination procedure carried out at the immigration examination area will be referred to as "authentication stage ST5". After being authenticated in the authentication stage ST5, the user U moves to the customs inspection area.
[0022]
The automatic customs gate device 70 is a device that is installed at the customs inspection area in the airport and automatically performs customs inspection procedures for the user U. The automatic customs gate device 70 has an entrance gate terminal 71 and an exit gate terminal 72 . The user U may be allowed to use the automatic customs gate 70 if he has pre-registered to use the automatic customs gate 70 . The business terminal 80 is installed at a manned counter in the customs inspection area. The staff member S6 uses the business terminal 80 to carry out customs inspection procedures for the user U. Hereinafter, the customs inspection procedure carried out at the customs inspection site will be referred to as "authentication stage ST6". After being authenticated in the authentication stage ST6, the user U can leave the customs inspection area and enter the second country.
[0023]
The business terminals 22, 32, 42, 52, 62, and 80 are terminals used for business by staff members S1 to S6 of airlines and airport facilities, respectively. For example, it is a stationary information processing terminal installed at a work place such as a counter where a staff member engages in work. Note that each business terminal may be, for example, a portable information processing terminal such as a tablet terminal, a smart phone, or a mobile phone.
[0024]
In addition, as shown in FIG. 1, the management server 10 has a user information DB 11, a travel/authentication history information DB 12, and a credit information DB 13. Note that each database does not need to be a single database, and may be configured as a plurality of database groups using block chain technology, for example. It is assumed that the information stored in the user information DB 11, the travel/authentication history information DB 12, and the credit information DB 13 are shared between the first country and the second country.
[0025]
FIG. 2A is a diagram showing an example of information stored in the user information DB 11. FIG. User information about each user U is registered in the user information DB 11 for each user ID, which is an identifier for identifying the user U. FIG. In this embodiment, the user ID is unique identification information different from the passport number.
[0026]
The user information registered in the user information DB 11 includes the name of the user U who is associated with each other, personal identification information such as nationality, biometric information, the flight number of the aircraft on which the user U boarded, the departure place, and the destination. , departure time, boarding gate, etc. The term biometric information in the present embodiment means a face image and a feature amount extracted from the face image, but the biometric information is not limited to the face image and the face feature amount. That is, biometric authentication may be performed using a fingerprint image, a palm print image, an auricle image, an iris image, or the like as the user U's biometric information.
[0027]
FIG. 2B is a diagram showing an example of information stored in the travel/authentication history information DB 12. FIG. The travel/authentication history information DB 12 includes personal attribute information, travel history information, and authentication history information regarding each user U for each user ID.
[0028]
The travel history information is information about the user U who has a travel history. The travel history information can be registered by administrative offices and airlines of each country, for example, when the user U enters and leaves the country. The travel history information includes data items such as User U's place of departure (place of departure), date of departure (date of departure), flight number, place of entry (place of arrival), and date of entry (date of arrival). I'm in. Port of entry and port of departure may refer to the airport of entry and the airport of departure, respectively.
[0029]
The authentication history information is information related to the authentication results in multiple authentication stages that the user U received during travel. In this embodiment, a series of multiple authentication stages is generically called "examination". The authentication history information can be registered by administrative authorities and airlines of each country, for example, when the user U enters and leaves the country.
[0030]
In this embodiment, the authentication result in each authentication stage is defined in three stages: "OK", "-", and "WR". The authentication result "OK" indicates that the authentication was successful. An authentication result "-" indicates that authentication has not yet been performed. For example, if the user U is a first-time traveler, the authentication result is maintained at a value of "-" until the examination. The authentication result "WR" indicates that the user U received a "warning" from the staff in the authentication stage. It should be noted that if authentication fails in the authentication stage, entry or departure from the country is not allowed, so another value may be set.
[0031]
As a specific example of receiving a "warning" from the staff, (A) in the authentication stage ST2 (security inspection procedure), if an item that violates the carry-on rules is found and the item is confiscated, (B) authentication For example, when an undeclared article is found in stage ST6 (customs inspection procedure) and a corrected declaration is made. Note that these are only examples, and various cases are conceivable in each authentication stage. Further, in this embodiment, the information of the user U who received the "warning" from the staff is distinguished from the information of the person on the blacklist who is restricted from entering and leaving the country.
[0032]
FIG. 2C is a diagram showing an example of information stored in the credit information DB 13. FIG. Here, the credit information DB 13 has user ID and credit as data items. The credibility is the trust level of the user U evaluated based on the travel history information, the authentication history information, and the personal attribute information of the user U's past travels (hereinafter referred to as "first travel"). It is information indicating In other words, the credibility is a value representing the degree to which the user U is authenticated in each authentication stage. Specifically, in the case of a user U who has not been pointed out to be inadequate in the examination at the time of travel in the past, that is, in the case of a good traveler, the creditworthiness of the user U is higher than that of a first-time traveler. .
[0033]
Conversely, in the case of a user U who was pointed out to be inadequate in the examination at the time of travel in the past, the creditworthiness of the user U will be lower than that of a good traveler and a first-time traveler. The authentication result "OK" in FIG. 2B is converted into an authentication score "1". The authentication result "WR" is converted into an authentication score "-1". Then, the authentication result "-" is converted into an authentication score "0". Transform authorization results for each trip and average by authorization stage for multiple trips. As a result, the credit information shown in FIG. 2C is obtained. Note that FIG. 2C shows that the credibility is calculated not only for each authentication stage, but also for all stages.
[0034]
Next, a hardware configuration example of each device constituting the passenger control system 1 will be described with reference to FIGS. 3 to 10. FIG. 3 to 10, devices having the same names but different numbers only have the same functions, so detailed descriptions thereof will be omitted in the subsequent drawings.
[0035]
FIG. 3 is a block diagram showing an example of the hardware configuration of the management server 10. As shown in FIG. As shown in the figure, the management server 10 has a CPU (Central Processing Unit) 101 , a RAM (Random Access Memory) 102 , a storage device 103 and a communication I/F 104 . Each device is connected to the bus line 105 .
[0036]
The CPU 101 is a processor that performs predetermined operations according to programs stored in the storage device 103 and that has the function of controlling each part of the management server 10 . In the management server 10, the CPU 101 functions as a determination unit and an output unit. The RAM 102 is composed of a volatile storage medium and provides a temporary memory area required for the operation of the CPU 101 .
[0037]
The storage device 103 is composed of a storage medium such as a non-volatile memory and a hard disk drive, and functions as a storage unit. The storage device 103 stores programs executed by the CPU 101, data referred to by the CPU 101 during execution of the programs, and the like.
[0038]
The communication I/F 104 is a communication interface based on standards such as Ethernet (registered trademark), Wi-Fi (registered trademark), 4G, etc., and is a module for communicating with the check-in terminal 20 and the like.
[0039]
FIG. 4 is a block diagram showing an example of the hardware configuration of the check-in terminal 20. As shown in FIG. As shown in the figure, the check-in terminal 20 has a CPU 201 , a RAM 202 , a storage device 203 , a communication I/F 204 , an input device 206 , a display device 207 and a medium reading device 208 . Each device is connected to the bus line 205 .
[0040]
The input device 206 is, for example, a pointing device such as a touch panel, or a keyboard. In the check-in terminal 20 of this embodiment, the display device 207 and the input device 206 are integrally formed as a touch panel. The display device 207 is a liquid crystal display device, an OLED (Organic Light Emitting Diode) display device, or the like, and is used to display moving images, still images, characters, and the like.
[0041]
The medium reading device 208 is a device that reads the passport and airline ticket medium of the user U and acquires information recorded in the passport and airline ticket. The airline ticket medium is, for example, a paper airline ticket, a mobile terminal that displays an e-ticket receipt, or the like. The medium reading device 208 is composed of, for example, a code reader, an image scanner, a non-contact IC (Integrated Circuit) reader, an OCR (Optical Character Reader) device, etc., and acquires information from various media held over its reading section.
[0042]
FIG. 5 is a block diagram showing an example of the hardware configuration of the business terminal 22. As shown in FIG. As shown in the figure, the business terminal 22 has a CPU 221 , a RAM 222 , a storage device 223 , a communication I/F 224 , an input device 226 , a display device 227 and a medium reading device 228 . Each device is connected to a bus line 225 . The hardware configuration of the business terminals 32, 42, 52, 62, and 80 is the same as that of the business terminal 22, but some devices may be omitted or other devices may be added as necessary. may
[0043]
FIG. 6 is a block diagram showing an example of the hardware configuration of the safety inspection device 30. As shown in FIG. As shown in the figure, the security inspection device 30 has a CPU 301, a RAM 302, a storage device 303, a communication I/F 304, an input device 306, a display device 307, a biological information acquisition device 309, and a metal detection gate 310. . Each device is connected to the bus line 305 .
[0044]
The biometric information acquisition device 309 is a device that acquires a face image of the user U as user U's biometric information. The biometric information acquisition device 309 is, for example, a digital camera that captures the face of the user U standing in front of the security inspection device 30, captures the face of the user U, and acquires the face image.
[0045]
The metal detection gate 310 is a gate-type metal detector that detects metals on the user U who passes through the metal detection gate 310 .
[0046]
FIG. 7 is a block diagram showing an example of the hardware configuration of the automated gate device 40. As shown in FIG. The automated gate device 40 has a CPU 401 , a RAM 402 , a storage device 403 , a communication I/F 404 , an input device 406 , a display device 407 , a biological information acquisition device 409 and a gate 411 . Each device is connected to a bus line 405 . The automated gate device 60 arranged at the immigration inspection area has the same hardware configuration as the automated gate device 40 .
[0047]
When the automated gate device 40 successfully verifies the identity of the user U and the user U passes through immigration, the gate 411 is controlled by the CPU 401 to change from a closed state that blocks passage of the user U during standby. It shifts to an open state in which the user U is permitted to pass. The method of the gate 411 is not particularly limited, and may be, for example, a flapper gate that opens and closes by flappers provided from one or both sides of the passage, a turnstile gate that rotates three bars, or the like.
[0048]
FIG. 8 is a block diagram showing an example of the hardware configuration of the boarding gate device 50. As shown in FIG. As shown in the figure, the boarding gate device 50 has a CPU 501 , a RAM 502 , a storage device 503 , a communication I/F 504 , an input device 506 , a display device 507 , a biological information acquisition device 509 and a gate 511 . Each device is connected to a bus line 505 .
[0049]
FIG. 9 is a block diagram showing an example of the hardware configuration of the entrance gate terminal 71. As shown in FIG. The entrance gate terminal 71 has a CPU 711 , a RAM 712 , a storage device 713 , an entrance gate door 716 , a passage detection sensor 717 , a communication I/F 714 and a guide display 718 . Each device is connected to a bus line 715 .
[0050]
The entrance gate door 716 is an opening/closing door that opens and closes under the control of the CPU 711, and transitions between an open state that allows the user U to pass through and a closed state that blocks the user U from passing through. . The opening and closing method of the entrance gate door 716 is not particularly limited, but may be, for example, a flapper type, a slide type, a rotary type, or the like.
[0051]
When the passage detection sensor 717 detects that the user U has passed, it outputs an output signal indicating that the user U has passed. The CPU 711 can determine whether or not the user U has passed through the entrance gate terminal 71 and entered the gate passage based on the output signals of the plurality of passage detection sensors 717 and their output order. The gate passage is the area between the entrance gate terminal 71 and the exit gate terminal 72 .
[0052]
Under the control of the CPU 711, the guide display 718 displays a display indicating whether or not entry into the gate passage is permitted. The guidance indicator 718 indicates that entry into the gate passage is permitted when the entrance gate door 716 is open. Further, the guide display 718 indicates that entry into the gate passage is prohibited when the entrance gate door 716 is closed. The guidance indicator 718 can display permission or denial of entry into the gate passage by, for example, color display, symbol display, character display, or the like.
[0053]
FIG. 10 is a block diagram showing an example of the hardware configuration of the exit gate terminal 72. As shown in FIG. The exit gate terminal 72 has a CPU 721, a RAM 722, a storage device 723, a display device 726, a first camera 727, a second camera 728, an exit gate door 729, a passage detection sensor 720, a communication I/F 724, and a guide display 730. ing. Each device is connected to bus line 725 .
[0054]
The first camera 727 is a long-distance camera capable of photographing at least the inside of the gate passage and a longer distance than the second camera 728. The second camera 728 is a short-range camera that captures at least the area in front of the exit gate terminal 72 . Note that the positions at which the first camera 727 and the second camera 728 are provided are not particularly limited, and may be any positions that can achieve their respective photographable ranges.
[0055]
The exit gate door 729 is an opening/closing door that performs opening and closing operations under the control of the CPU 721, and transitions between a closed state that blocks the passage of the user U and an open state that allows the passage of the user U. .
[0056]
Next, the operation of each device in the passenger control system 1 according to this embodiment will be described based on FIGS. 11 to 22. FIG.
[0057]
FIG. 11 is a flowchart showing an example of processing of the management server 10. FIG. This process is performed at a predetermined period or when the examination associated with the travel of the user U is started.
[0058]
First, the management server 10 acquires travel/authentication history data (travel history information, authentication history information, and personal attribute information) from the travel/authentication history information DB 12 for each passenger ID (step S101).
[0059]
Next, the management server 10 digitizes the travel history information, authentication history information, and personal attribute information included in the travel/authentication history data (step S102).
[0060]
Next, the management server 10 acquires a history feature amount represented by a vector from data obtained by digitizing travel history information, authentication history information, and personal attribute information (step S103).
[0061]
Next, the management server 10 calculates the credibility of the user U by inputting the history feature amount into a predetermined relational expression (step S104).
[0062]
Then, the management server 10 associates the calculated credit with the user ID and registers it in the credit information DB 13 (step S105).
[0063]
The following three (A) to (C) are given as specific examples of the method for calculating the history feature amount. Here, the record regarding the user U acquired from the travel/authentication history information DB 12 shown in FIG. /arrival date), authentication history information (ST1/ST2/ST3/ST4/ST5/ST6)}. However, the calculation method is not limited to these.
[0064]
(A) When only authentication history information is used
As shown in FIG. 2B, the authentication history information {ST1/ST2/ST3/ST4/ST5/ST6} regarding the user U whose passenger ID is "20159" is {OK, OK, OK, OK, OK, OK}. be. If the authentication result is "OK", it is "1", "Caution" is "-1", and "unauthenticated" is "0". 1/1/1/1/1/1}. By vectorizing the authentication history information, a vector (1, 1, 1, 1, 1, 1) is obtained as a history feature amount.
[0065]
Also, if the number of trips is multiple, the authentication result can use the average value of the authentication scores in each authentication stage as a history feature value. For example, if the history features of (1,1,1,1,1,1) and (1,-1,1,1,1,-1) are obtained from the authentication history information for two trips, may be averaged to obtain a history feature quantity of (1,0,1,1,1,0). Also, instead of using the authentication history information of all past trips, calculation may be performed with a limited range such as the last five trips or within the past three years. The same is true when the number of trips is three or more.
[0066]
(B) When using travel history information and authentication history information
Travel history information {departure place/arrival place/flight number/departure date/arrival date} for user U with passenger ID "20159" is {NRT, AAA, AB123, 12/01/2018, 13/01/2018 }. In addition, airports in a plurality of countries are classified into one of predetermined categories and digitized for the departure and arrival locations. For example, "0.8" for airports in Japan (NRT), "1" for airports with stricter screening standards than Japanese airports, and "0.6" for airports with stricter screening standards than Japanese airports. ”. For example, if the examination criteria at the airport of the arrival country (AAA) are more lenient than in Japan, the travel history information {departure point/arrival point} of the passenger ID is {0.8/0.6}. A vector (0.8, 0.6, 1, 1, 1, 1, 1, 1) is obtained by combining this with the history feature amount related to the authentication history information obtained in (A) above.
[0067]
(C) When using personal attribute information, travel history information and authentication history information
The personal attribute information {nationality/sex/age} of user U with passenger ID "20159" is {JPN, M, 20}. For example, a case will be described in which the history feature amount is obtained for age among the person attribute information. Here, the age is digitized as "1" when the age is 0 to 15 years old, "0.7" when the age is 16 to 60 years old, and "0.9" when the age is 61 years old or more. . The personal attribute information regarding the user U whose passenger ID is "20159" is {0.7}. Then, together with the history feature amount related to the travel history information and the authentication history information obtained in (A) and (B) above, the vector (0.7, 0.8, 0.6, 1, 1,1,1,1,1) is obtained.
[0068]
In addition, the following three (D) to (F) are given as specific examples of algorithms for calculating credibility from historical feature values. However, the algorithms that can be used are not limited to these.
[0069]
(D) Calculation method by averaging
Let the credit score be T, and the history feature amount be (F(1), F(2), . . . , F(n-1), F(n) ). In this case, the credibility T can be calculated by, for example, the following relational expression (1).

[0070]
(E) Calculation method by integration
The credibility T can be calculated, for example, by the following relational expression (2).

[0071]
(F) Calculation method by weighted average
Assuming that the weights for items (1) to (n) are W(1) to W(n), respectively, the credibility T can be calculated by the following formula (3).

[0072]
In this case, the weights W(1) to W(n) can be set arbitrarily. For example, the weighting of authentication stages ST2 (security inspection procedure) and ST6 (customs inspection procedure) can be set to a larger value than the weighting of authentication stage ST1 (check-in procedure).
[0073]
FIG. 12 is a sequence diagram showing an example of processing of the check-in terminal 20 and the management server 10. FIG. This process is executed each time the user U uses the check-in terminal 20 to perform a check-in procedure. In addition, below, the case where a passport is selected on the search screen of reservation information is demonstrated as an example.
[0074]
First, the check-in terminal 20 determines whether or not the passport of the user U is held over the reading unit (not shown) of the medium reader 208 (step S201), and waits until the passport is held over (step S201, NO).
[0075]
Next, when the check-in terminal 20 determines that the passport has been held over the reading unit of the medium reading device 208 (step S201, YES), it acquires the passport information of the user U from the held passport (step S202). The acquired passport information includes the passport number of the user U, information on the passport issuing country, and the like. At this time, the medium reading device 208 can also acquire the identification information of the user U from the passport.
[0076]
Next, the check-in terminal 20 transmits the acquired passport information to the management server 10 (step S203). When receiving the passport information from the check-in terminal 20, the management server 10 acquires the credit information of the user U using the passport number included in the passport information as a key (step S204). The credit information includes the user ID of user U and credit. The management server 10 transmits the credit information of the user U to the check-in terminal 20 (step S205).
[0077]
Next, when the check-in terminal 20 receives the creditworthiness information of the user U from the management server 10, it compares the creditworthiness of the user U included in the creditworthiness information with a predetermined threshold (reference value) (step S206). Here, when the check-in terminal 20 determines that the creditworthiness of the user U is equal to or higher than the predetermined threshold (step S206, YES), the process proceeds to step S207. On the other hand, when the check-in terminal 20 determines that the creditworthiness of the user U is less than the predetermined threshold (step S206, NO), the check-in terminal 20 sends a guidance message to the user U. Notification is made (step S212), and the process ends.
[0078]
FIG. 13 is a diagram showing an example of a screen displayed by the check-in terminal 20. FIG. Here, a guidance message ("Currently, customers cannot use the automatic check-in machine. Please check in at the check-in counter.") is displayed on the screen.
[0079]
Next, The check-in terminal 20 determines whether or not the airline ticket medium of the user U is held over the reading unit of the medium reader 208 (step S207), and waits until the airline ticket medium is held (step S207, NO).
[0080]
Next, when the check-in terminal 20 determines that the airline ticket medium is held over the reading unit of the medium reader 208 (step S207, YES), it acquires the boarding information of the user U from the held airline ticket medium ( step S208). At this time, the medium reading device 208 can acquire boarding information (name, flight number, boarding date, boarding airport, arrival airport, boarding time, arrival time, etc.) of the user U from the airline ticket medium.
[0081]
The check-in terminal 20 then transmits the user information to the management server 10 (step S209), and also transmits status information indicating that the check-in procedure has been completed and the authentication result to the management server 10 (step S210). When receiving the information from the check-in terminal 20, the management server 10 updates the user information DB 11 and the travel/authentication history information DB 12 (step S211). Specifically, using the user ID as a key, the status of the user information DB 11 is updated to "check-in procedure completed: 1", and the registered face image is updated with the passport face image. Also, using the user ID as a key, the authentication result regarding the authentication stage ST1 of the user U in the travel/authentication history information DB 12 is updated. In this way, by registering the passport face image obtained from the passport in the check-in procedure in the user information DB 11 as the registered face image, it is possible to perform matching processing between the photographed face image and the registered face image in the subsequent authentication stages. becomes. That is, the user ID associated with the registered face image is identification information that can be commonly used in all authentication stages. By using such a common user ID, the examination of the user U can be made more efficient. In this embodiment, the face image of the user U is not photographed during the check-in procedure, but the face image may be photographed at the check-in terminal 20 as in the other authentication stages described later. . In this case, matching processing with the passport face image may be executed, and both the passport face image and the photographed image may be separately registered in the user information DB 11 on condition that the matching processing is successful.
[0082]
[Security check procedure]
FIG. 14 is a sequence diagram showing an example of the processing of the safety inspection device 30 and the management server 10. FIG. This process is executed when the user U who has completed the check-in procedure undergoes the security inspection procedure.
[0083]
The security inspection device 30 constantly or periodically photographs the area in front of the metal detection gate 310, and determines whether or not the face of the user U standing in front of the metal detection gate 310 is detected in the photographed image (step S301). The security inspection device 30 waits until the face of the user U is detected in the image by the biometric information acquisition device 309 (step S301, NO).
[0084]
When the security inspection device 30 determines that the face of the user U has been detected by the biometric information acquisition device 309 (step S301, YES), the face of the user U is photographed, and the face image of the user U is taken as the target face. It is acquired as an image (step S302).
[0085]
Next, the security inspection device 30 transmits the target face image of the user U captured by the biometric information acquiring device 309 together with a matching request to the management server 10 via the network NW (step S303). As a result, the security inspection device 30 compares the target face image of the user U captured by the biometric information acquisition device 309 and the plurality of registered face images registered in the user information DB 11 of the management server 10 at a ratio of 1:N. The management server 10 is requested to collate.
[0086]
Upon receiving the target face image and the matching request from the security inspection device 30, the management server 10 checks the face image of the user U (step S304). That is, the management server 10 collates the target face image received from the security inspection device 30 with a plurality of registered face images registered in the user information DB 11 at a ratio of 1:N.
[0087]
Here, when the management server 10 determines that the verification result does not match (step S305, NO), the management server 10 transmits the verification result information to the safety inspection device 30 (step S307), and the process proceeds to step S309. Transition. On the other hand, when the management server 10 determines that the collation result is collation match (step S305, YES), the process proceeds to step S306.
In step S306, the management server 10 acquires the user ID from the user information DB 11 based on the matching registered face image, and also acquires credit information from the credit information DB 13 using the user ID as a key. The management server 10 then transmits the acquired user ID and credit information together with the matching result information to the safety inspection device 30 (step S308).
[0088]
Next, when the security inspection device 30 determines that the collation result matches the collation (step S309, YES), the notification information including the examination criteria corresponding to the creditworthiness of the user U is displayed on the display device 307 (step S310), the security inspection process for the user U is executed (step S311). In the security inspection process, the CPU 301 controls each section of the security inspection device 30 . As a result, the security inspection device 30 detects metal objects worn by the user U who passes through the metal detection gate 310 . After passing through the metal detection gate 310, the user U heads for the immigration inspection area.
[0089]
Next, the security inspection device 30 transmits status information indicating that the security inspection procedure for the user U has been completed through face image matching and the authentication result to the management server 10 via the network NW (step S312).
[0090]
When the management server 10 receives the status information and the authentication result from the security inspection device 30, it updates the user information DB 11 and the travel/authentication history information DB 12 (step S313). Specifically, using the user ID as a key, the status of the user information DB 11 is updated to "safety inspection procedure completed: 2". Also, using the user ID as a key, the authentication result regarding the authentication stage ST2 of the user U in the travel/authentication history information DB 12 is updated.
[0091]
On the other hand, when the security inspection device 30 determines that the verification result in the management server 10 is non-matching (step S309, NO), the security inspection device 30 notifies the user U that identity verification has failed ( step S314). For example, the security inspection device 30 causes the display device 307 to display a notification screen notifying that the personal identification has failed.
[0092]
[Departure examination procedure]
FIG. 15 is a sequence diagram showing operations of the automated gate device 40 and the management server 10. FIG. This processing is executed when the user U who has completed the security inspection procedure undergoes the departure examination procedure.
[0093]
After completing the security inspection procedures, the user U heads to the immigration inspection area and undergoes the immigration inspection procedures at the automated gate device 40. The automated gate device 40 and the management server 10 execute the process shown in FIG. 15 each time each of the plurality of users U undergoes the departure examination procedure.
[0094]
The automated gate device 40 constantly or periodically captures an image in front of the device using the biological information acquisition device 409, and determines whether or not the face of the user U is detected in the captured image (step S401). The automated gate device 40 waits until the face of the user U is detected in the image by the biometric information acquisition device 409 (step S401, NO).
[0095]
When the automated gate device 40 determines that the face of the user U has been detected by the biometric information acquiring device 409 (step S401, YES), the automated gate device 40 photographs the face of the user U and uses the face image of the user U as the target biometric. It is acquired as an authentication image (step S402).
[0096]
Next, the automated gate device 40 transmits the target face image of the user U captured by the biometric information acquisition device 409 together with a matching request to the management server 10 via the network NW (step S403). As a result, the automated gate device 40 compares the target face image of the user U captured by the biometric information acquisition device 409 and the plurality of registered face images registered in the user information DB 11 of the management server 10 at a ratio of 1:N. The management server 10 is requested to collate.
[0097]
Upon receiving the target face image and the matching request from the automated gate device 40, the management server 10 checks the face image of the user U (step S404). That is, the management server 10 collates the target face image received from the automated gate device 40 with a plurality of registered face images registered in the user information DB 11 at a ratio of 1:N.
[0098]
Here, when the management server 10 determines that the collation result does not match (step S405, NO), the management server 10 transmits the collation result information to the automated gate device 40 (step S407), and the process proceeds to step S409. Transition. On the other hand, if the management server 10 determines that the collation result is match (step S405, YES), the process proceeds to step S406.
[0099]
In step S406, the management server 10 acquires the user ID from the user information DB 11 based on the matched registered face image, and also acquires credit information from the credit information DB 13 using the user ID as a key. The management server 10 then transmits the acquired user ID and credit information together with the collation result information to the automated gate device 40 (step S408).
[0100]
Next, when the automated gate device 40 determines that the matching results match (step S409, YES), it determines whether or not the credibility is equal to or greater than a predetermined threshold (step S410). When the automated gate device 40 determines that the creditworthiness is equal to or higher than the predetermined threshold (step S410, YES), it opens the gate 411 (step S411). On the other hand, when the automated gate device 40 determines that the creditworthiness is less than the predetermined threshold (step S410, NO), it notifies error information (step S415). For example, the display device 407 displays a notification screen including a message such as "Please go through immigration procedures at a manned counter."
[0101]
Next, the automated gate device 40 transmits status information indicating that the immigration examination procedure for the user U has been completed and the authentication result to the management server 10 via the network NW (step S412).
[0102]
Upon receiving the status information and authentication result from the automated gate device 40, the management server 10 updates the user information DB 11 and the travel/authentication history information DB 12 (step S413). Specifically, using the user ID as a key, the status of the user information DB 11 is updated to "departure examination procedure completed: 3". Also, using the user ID as a key, the authentication result regarding the authentication stage ST3 of the user U in the travel/authentication history information DB 12 is updated.
[0103]
On the other hand, when the automated gate device 40 determines that the matching result in the management server 10 does not match (step S409, NO), the automated gate device 40 notifies the user U that the identity verification has failed ( step S414). For example, the automated gate device 40 causes the display device 407 to display a notification screen notifying that the identity verification has failed.
[0104]
[Boarding Procedures]
FIG. 16 is a sequence diagram showing operations of the boarding gate device 50 and the management server 10. FIG.
[0105]
The boarding gate device 50 constantly or periodically captures an image in front of the device using the biological information acquisition device 509, and determines whether or not the face of the user U is detected in the captured image (step S501). The boarding gate device 50 waits until the face of the user U is detected in the image by the biometric information acquisition device 509 (step S501, NO).
[0106]
When the boarding gate device 50 determines that the face of the user U has been detected by the biometric information acquiring device 509 (step S501, YES), the boarding gate device 50 photographs the face of the user U and uses the face image of the user U as the target face. It is acquired as an image (step S502).
[0107]
Next, the boarding gate device 50 The target face image of the user U captured by the information acquisition device 509 is transmitted to the management server 10 along with a matching request via the network NW (step S503). As a result, the boarding gate device 50 compares the target face image of the user U captured by the biometric information acquisition device 509 and the plurality of registered face images registered in the user information DB 11 of the management server 10 at a ratio of 1:N. The management server 10 is requested to collate.
[0108]
Upon receiving the target face image and the matching request from the boarding gate device 50, the management server 10 checks the face image of the user U (step S504). That is, the management server 10 collates the target facial image received from the boarding gate device 50 with a plurality of registered facial images registered in the user information DB 11 at a ratio of 1:N.
[0109]
Here, if the management server 10 determines that the collation result does not match (step S505, NO), the management server 10 transmits the collation result information to the boarding gate device 50 (step S507), and the process proceeds to step S509. Transition. On the other hand, if the management server 10 determines that the collation result is collation match (step S505, YES), the process proceeds to step S506.
[0110]
In step S506, the management server 10 acquires the user ID from the user information DB 11 based on the matched registered face image, and also acquires credit information from the credit information DB 13 using the user ID as a key. The management server 10 then transmits the acquired user ID and credit information together with the matching result information to the boarding gate device 50 (step S508).
[0111]
Next, when the boarding gate device 50 determines that the matching results match (step S509, YES), it determines whether or not the credibility is equal to or higher than a predetermined threshold (step S510). When the boarding gate device 50 determines that the credibility is equal to or higher than the predetermined threshold (step S510, YES), it opens the gate 511 (step S511). On the other hand, when the boarding gate device 50 determines that the creditworthiness is less than the predetermined threshold (step S510, NO), it notifies error information (step S515). For example, the display device 507 displays a notification screen including a message such as "Please complete boarding procedures at the manned counter."
[0112]
Next, the boarding gate device 50 transmits status information indicating that the boarding procedure for the user U has been completed through face image matching and the authentication result to the management server 10 via the network NW (step S512).
[0113]
Upon receiving the status information and authentication result from the boarding gate device 50, the management server 10 updates the user information DB 11 and the travel/authentication history information DB 12 (step S513). Specifically, using the user ID as a key, the status of the user information DB 11 is updated to "boarding procedure completed: 4". Also, using the user ID as a key, the authentication result regarding the authentication stage ST4 of the user U in the travel/authentication history information DB 12 is updated.
[0114]
On the other hand, when the boarding gate device 50 determines that the verification result in the management server 10 does not match the verification (step S509, NO), the boarding gate device 50 notifies the user U that the identity verification has failed ( step S514). For example, the boarding gate device 50 causes the display device 507 to display a notification screen notifying that the identity verification has failed.
[0115]
[Immigration procedure]
FIG. 17 is a sequence diagram showing operations of the automated gate device 60 and the management server 10. FIG. This processing is executed when the user U who has arrived in the second country undergoes immigration procedures.
[0116]
The automated gate device 60 constantly or periodically captures an image in front of the device using the biometric information acquisition device 609, and determines whether or not the face of the user U is detected in the captured image (step S601). The automated gate device 60 waits until the face of the user U is detected in the image by the biometric information acquisition device 609 (step S601, NO).
[0117]
When the automated gate device 60 determines that the face of the user U has been detected by the biometric information acquisition device 609 (step S601, YES), the automated gate device 60 photographs the face of the user U and uses the face image of the user U as the target face. It is acquired as an image (step S602).
[0118]
Next, the automated gate device 60 transmits the target face image of the user U captured by the biometric information acquisition device 609 together with a matching request to the management server 10 via the network NW (step S603). As a result, the automated gate device 60 compares the target face image of the user U captured by the biometric information acquisition device 609 and the plurality of registered face images registered in the user information DB 11 of the management server 10 at a ratio of 1:N. The management server 10 is requested to collate.
[0119]
Upon receiving the target face image and the matching request from the automated gate device 60, the management server 10 checks the face image of the user U (step S604). That is, the management server 10 collates the target face image received from the automated gate device 60 with a plurality of registered face images registered in the user information DB 11 at a ratio of 1:N.
[0120]
If the management server 10 determines that the collation result does not match (step S605, NO), the management server 10 transmits the collation result information to the automated gate device 60 (step S607), and the process proceeds to step S609. Transition. On the other hand, if the management server 10 determines that the collation result is match (step S605, YES), the process proceeds to step S606.
[0121]
In step S606, the management server 10 acquires the user ID from the user information DB 11 based on the matching registered face image, and also acquires credit information from the credit information DB 13 using the user ID as a key. The management server 10 then transmits the acquired user ID and credit information together with the collation result information to the automated gate device 60 (step S608).
[0122]
Next, when the automated gate device 60 determines that the matching results match (step S609, YES), it determines whether or not the credibility is equal to or higher than a predetermined threshold (step S610). When the automated gate device 60 determines that the creditworthiness is equal to or higher than the predetermined threshold (step S610, YES), it opens the gate 611 (step S611). On the other hand, when the automated gate device 60 determines that the creditworthiness is less than the predetermined threshold (step S610, NO), it notifies error information (step S615). For example, the display device 607 displays a notification screen including a message such as "Please go through immigration procedures at a manned counter."
[0123]
Next, the automated gate device 60 transmits status information indicating that the immigration procedure for the user U has been completed through face image matching and the authentication result to the management server 10 via the network NW (step S612).
[0124]
Upon receiving the status information and authentication result from the automated gate device 60, the management server 10 updates the user information DB 11 and the travel/authentication history information DB 12 (step S613). Specifically, using the user ID as a key, the status of the user information DB 11 is updated to "completion of immigration procedure: 5". Also, using the user ID as a key, the authentication result regarding the authentication stage ST5 of the user U in the travel/authentication history information DB 12 is updated.
[0125]
On the other hand, when the automated gate device 60 determines that the matching result in the management server 10 does not match (step S609, NO), the automated gate device 60 notifies the user U that the identity verification has failed ( step S614). For example, the automated gate device 60 causes the display device 607 to display a notification screen notifying that the identity verification has failed.
[0126]
[Customs inspection procedure]
FIG. 18 is a sequence diagram showing operations of the automatic customs gate device 70 and the management server 10. FIG. This processing is executed when the user U who has completed the immigration examination procedure undergoes the customs inspection procedure. In the following, the processing when the user U is present in the gate passage between the entrance gate door 716 (entrance gate terminal 71) and the exit gate door 729 (exit gate terminal 72) of the automatic customs gate device 70 will be described.
[0127]
The automatic customs gate device 70 constantly or periodically photographs the gate passage with the second camera 728, and determines whether or not the face of the user U is detected in the photographed image (step S701). The automatic customs gate device 70 waits until the face of the user U is detected in the image (step S701, NO).
[0128]
When the automatic customs gate device 70 determines that the face of the user U is detected in the image (step S701, YES), it photographs the face of the user U and uses the face image of the user U as the target face image. Acquire (step S702).
[0129]
Next, the automatic customs gate device 70 transmits the photographed target face image of the user U together with a matching request to the management server 10 via the network NW (step S703). As a result, the automatic customs gate device 70 manages 1:N collation of the photographed target face image of the user U and a plurality of registered face images registered in the user information DB 11 of the management server 10. A request is made to the server 10 .
[0130]
Upon receiving the target face image and the matching request from the automatic customs gate device 70, the management server 10 checks the face image of the user U (step S704). That is, the management server 10 compares the target facial image received from the automatic customs gate device 70 with a plurality of registered facial images registered in the user information DB 11 at a ratio of 1:N.
[0131]
Here, if the management server 10 determines that the collation result does not match (step S705, NO), the management server 10 transmits the collation result information to the automatic customs gate device 70 (step S707), and the process proceeds to step S709. transition to On the other hand, if the management server 10 determines that the collation result is match (step S705, YES), the process proceeds to step S706.
[0132]
In step S706, the management server 10 acquires the user ID from the user information DB 11 based on the matched registered face image, and also acquires credit information from the credit information DB 13 using the user ID as a key. The management server 10 then transmits the acquired user ID and creditworthiness information to the automatic customs gate device 70 together with the verification result information (step S708).
[0133]
Next, when the automatic customs gate device 70 determines that the matching results match (step S709, YES), it determines whether or not the creditworthiness is equal to or higher than a predetermined threshold (step S710). When the automatic customs gate device 70 determines that the creditworthiness is equal to or higher than the predetermined threshold (step S710, YES), the automatic customs gate device 70 executes customs inspection processing (step S711). Then, if there is no problem with the inspection, the automatic customs gate device 70 (exit gate terminal 72) opens the exit gate door 729 (step S712). On the other hand, when the automatic customs gate device 70 determines that the creditworthiness is less than the predetermined threshold (step S710, NO), it notifies error information (step S716). For example, the display device 726 displays a notification screen containing a message such as "Please complete the customs inspection procedures at the manned counter." Then, the automatic customs gate device 70 (entrance gate terminal 71) opens the entrance gate door 716 (step S717).
[0134]
Next, the automatic customs gate device 70 transmits status information indicating that the customs inspection procedure of the user U has been completed through face image matching and the authentication result to the management server 10 via the network NW (step S713). .

The scope of the claims
[Claim 1]
a determination unit that determines the creditworthiness of the passenger based on historical information regarding the passenger's first trip;
an output unit that outputs information about the second travel based on the credit associated with the identification information of the passenger who is about to make the second travel;
Information processing device equipped with
[Claim 2]
The determination unit determines the creditworthiness based on a plurality of items included in the history information,
The information processing device according to claim 1.
[Claim 3]
The determination unit calculates the credibility by averaging historical feature values ​​quantified for each item,
The information processing device according to claim 2.
[Claim 4]
The determination unit determines the creditworthiness by a weighted average of historical feature amounts quantified for each item,
The information processing device according to claim 3.
[Claim 5]
The determination unit determines the creditworthiness for each of a plurality of items included in the history information,
The information processing device according to claim 1.
[Claim 6]
The determination unit calculates the credit rating based on a learning model that has learned in advance the relationship between the historical feature value quantified for each item and the credit rating,
The information processing device according to claim 2.
[Claim 7]
A learning unit that learns the learning model by updating the weighting between nodes of the neural network in the neural network that outputs the credit rating for the input history feature amount,
The information processing apparatus according to claim 6, further comprising:
[Claim 8]
The learning unit updates the learning model at a predetermined cycle,
The information processing device according to claim 7.
[Claim 9]
The learning unit updates the learning model as the history information is updated,
The information processing device according to claim 7.
[Claim 10]
The above items include the results of the examinations conducted in conjunction with the first travel,
The information processing apparatus according to any one of claims 2 to 9.
[Claim 11]
The examination result is defined in three or more stages,
The information processing device according to claim 10.
[Claim 12]
The above items include at least one of the departure point, arrival point, flight number of the aircraft used, departure date, and arrival date in the first travel,
The information processing apparatus according to any one of claims 2 to 11.
processing equipment.
[Claim 13]
 The above items include at least one of the passenger's nationality, gender, and age,
The information processing apparatus according to any one of claims 2 to 11.
[Claim 14]
The information on the second travel represents the criteria for the examination carried out in the second travel, and the criteria for the examination are determined according to the creditworthiness,
The information processing apparatus according to any one of claims 1 to 13.
[Claim 15]
The information on the second travel represents the criteria for a series of the plurality of examinations performed in the second travel, and the criteria for each of the examinations is according to the creditworthiness common to the plurality of examinations determined by
The information processing device according to claim 14.
[Claim 16]
The information on the second travel represents the criteria for a series of multiple examinations performed in the second travel, and the criteria for each of the examinations is determined according to the creditworthiness for each examination. ,
The information processing device according to claim 14.
[Claim 17]
The criteria for the examination are determined by comparing the creditworthiness with a predetermined threshold,
The information processing apparatus according to any one of claims 14 to 16.
[Claim 18]
The criteria for the examination are defined in multiple stages,
The information processing apparatus according to any one of claims 14 to 17.
[Claim 19]
The threshold differs depending on the type of examination,
The information processing device according to claim 17.
[Claim 20]
The information on the second travel is information that guides the passenger to a place according to the examination conducted in the second travel.
The information processing apparatus according to any one of claims 1 to 13.
[Claim 21]
an acquisition unit that acquires the creditworthiness of the passenger based on history information regarding the first travel of the passenger;
an output unit that outputs information about the second travel based on the credit associated with the identification information of the passenger who is about to make the second travel;
A terminal device equipped with
[Claim 22]
determining the creditworthiness of the passenger based on historical information regarding the passenger's first trip;
a step of outputting information regarding said second trip based on said creditworthiness associated with identification information of said passenger who is about to make a second trip;
An information processing method that includes
[Claim 23]
on the computer,
determining the creditworthiness of the passenger based on historical information regarding the passenger's first trip;
a step of outputting information regarding said second trip based on said creditworthiness associated with identification information of said passenger who is about to make a second trip;
A recording medium on which a program for executing

Documents

Application Documents

# Name Date
1 202117044196-TRANSLATIOIN OF PRIOIRTY DOCUMENTS ETC. [29-09-2021(online)].pdf 2021-09-29
2 202117044196-STATEMENT OF UNDERTAKING (FORM 3) [29-09-2021(online)].pdf 2021-09-29
3 202117044196-REQUEST FOR EXAMINATION (FORM-18) [29-09-2021(online)].pdf 2021-09-29
4 202117044196-POWER OF AUTHORITY [29-09-2021(online)].pdf 2021-09-29
5 202117044196-NOTIFICATION OF INT. APPLN. NO. & FILING DATE (PCT-RO-105-PCT Pamphlet) [29-09-2021(online)].pdf 2021-09-29
6 202117044196-FORM 18 [29-09-2021(online)].pdf 2021-09-29
7 202117044196-FORM 1 [29-09-2021(online)].pdf 2021-09-29
8 202117044196-DRAWINGS [29-09-2021(online)].pdf 2021-09-29
9 202117044196-DECLARATION OF INVENTORSHIP (FORM 5) [29-09-2021(online)].pdf 2021-09-29
10 202117044196-COMPLETE SPECIFICATION [29-09-2021(online)].pdf 2021-09-29
11 202117044196.pdf 2021-10-22
12 202117044196-MARKED COPIES OF AMENDEMENTS [30-10-2021(online)].pdf 2021-10-30
13 202117044196-FORM 13 [30-10-2021(online)].pdf 2021-10-30
14 202117044196-AMMENDED DOCUMENTS [30-10-2021(online)].pdf 2021-10-30
15 202117044196-Others-231121.pdf 2021-11-26
16 202117044196-FORM 3 [26-11-2021(online)].pdf 2021-11-26
17 202117044196-Correspondence-231121.pdf 2021-11-26
18 202117044196-Proof of Right [09-03-2022(online)].pdf 2022-03-09
19 202117044196-Others-110422.pdf 2022-04-13
20 202117044196-Correspondence-110422.pdf 2022-04-13
21 202117044196-FER.pdf 2022-10-12
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