Abstract: MANAGING CIVIL ADMINISTRATION IN A SMART CITY Abstract In some embodiments of the present disclosure, there is the potential for there to be a method provided for administering the civil administration of a smart city. This approach may include gathering data from a wide range of sources and analysing it in order to keep an eye on and maintain control over the functioning of the city. One more feasible form is making use of the data that has been reviewed to determine and rank the most critical areas that need growth. Another potential component of embodiments is the application of solutions to problem areas that have been identified via the process of discovery. It may be required to further monitor the implementation of the solutions in some embodiments in order to ensure that they are effective. This may be the case in certain cases.
1. A method for managing civil administration in a smart city, comprising: collecting and analyzing data from various sources to monitor and manage the functioning of the city; using the analyzed data to identify and prioritize areas for improvement; implementing solutions to address identified areas for improvement; monitoring the implementation of the solutions to ensure their effectiveness.
2. The method of claim 1, further comprising providing a user interface for citizens to report issues and provide feedback on the functioning of the city.
3. The method of claim 1, wherein the data collected from various sources includes data from sensors, government agencies, and citizens.
4. The method of claim 1, wherein the analyzed data is used to identify areas for improvement in one or more of the following areas: transportation, public safety, healthcare, education, and environmental sustainability.
5. The method of claim 1, wherein the solutions implemented to address identified areas for improvement are selected based on a cost-benefit analysis.
6. A system for managing civil administration in a smart city, comprising: a data collection and analysis module for collecting and analyzing data from various sources to monitor and manage the functioning of the city; a solution implementation module for implementing solutions to address areas for improvement identified through the data analysis; a monitoring module for monitoring the implementation of the solutions to ensure their effectiveness; and a user interface module for providing citizens with a means to report issues and provide feedback on the functioning of the city.
7. The system of claim 6, further comprising a database for storing the collected and analyzed data.
8. The system of claim 6, wherein the data collection and analysis module uses machine learning techniques to analyze the collected data. MANAGING CIVIL ADMINISTRATION IN A SMART CITY Abstract In some embodiments of the present disclosure, there is the potential for there to be a method provided for administering the civil administration of a smart city. This approach may include gathering data from a wide range of sources and analysing it in order to keep an eye on and maintain control over the functioning of the city. One more feasible form is making use of the data that has been reviewed to determine and rank the most critical areas that need growth. Another potential component of embodiments is the application of solutions to problem areas that have been identified via the process of discovery. It may be required to further monitor the implementation of the solutions in some embodiments in order to ensure that they are effective. This may be the case in certain cases. , Claims:Claims :
1. A method for managing civil administration in a smart city, comprising: collecting and analyzing data from various sources to monitor and manage the functioning of the city; using the analyzed data to identify and prioritize areas for improvement; implementing solutions to address identified areas for improvement; monitoring the implementation of the solutions to ensure their effectiveness.
2. The method of claim 1, further comprising providing a user interface for citizens to report issues and provide feedback on the functioning of the city.
3. The method of claim 1, wherein the data collected from various sources includes data from sensors, government agencies, and citizens.
4. The method of claim 1, wherein the analyzed data is used to identify areas for improvement in one or more of the following areas: transportation, public safety, healthcare, education, and environmental sustainability.
5. The method of claim 1, wherein the solutions implemented to address identified areas for improvement are selected based on a cost-benefit analysis.
6. A system for managing civil administration in a smart city, comprising: a data collection and analysis module for collecting and analyzing data from various sources to monitor and manage the functioning of the city; a solution implementation module for implementing solutions to address areas for improvement identified through the data analysis; a monitoring module for monitoring the implementation of the solutions to ensure their effectiveness; and a user interface module for providing citizens with a means to report issues and provide feedback on the functioning of the city.
7. The system of claim 6, further comprising a database for storing the collected and analyzed data.
8. The system of claim 6, wherein the data collection and analysis module uses machine learning techniques to analyze the collected data.
Description:MANAGING CIVIL ADMINISTRATION IN A SMART CITY
Field of the Invention
[0001] The present invention relates to a method and system for managing civil administration in a smart city. More specifically, the present invention provides a data-driven approach to managing the functioning of a smart city by collecting and analyzing data from various sources to identify areas for improvement, implementing solutions to address the identified areas for improvement, and monitoring their effectiveness.
Background
[0002] The background description includes information that may be useful in understanding the present invention. It is not an admission that any of the information provided herein is prior art or relevant to the presently claimed invention, or that any publication specifically or implicitly referenced is prior art.
[0003] Cities around the world are experiencing rapid urbanization and facing complex challenges such as traffic congestion, air pollution, waste management, and water scarcity. The concept of a "smart city" has emerged as a potential solution to address these challenges by leveraging advanced technologies such as the Internet of Things (IoT), artificial intelligence (AI), and data analytics.
[0004] A smart city is a city that uses technology to improve the quality of life for its citizens, enhance sustainability, and streamline administration. A smart city comprises various systems such as transportation, energy, waste management, water management, and public safety, all of which generate a massive amount of data. This data can be used to monitor and manage the functioning of the city, identify areas for improvement, and implement solutions to address these areas. The following are exemplary documents related to smart city management.
[0005] CN103116825B (by: Zhong Tong Clothing Consulting And Design Research Institute Co Ltd) Intelligent city management, front server, client devices, aggregated application server, coordinated management server, resource sharing service device, destructing tool server and resource clue tool server are formed with urban service bus;Front server converts thereof into the Data Transport Protocol of agreement for extracting customer data, stores to the exchange pool of resource sharing service device;Aggregated application server, for providing application component and serviced component for calling;Coordinated management server, for providing various services for user;Resource sharing service device: for receiving data from teledata extraction system, data are standardized;Resource clue tool server: the classification for carrying out special topic to the normal data in the consolidated storage is handled, and is stored in the thematic library of resource sharing service device;Destructing tool server is used to extract thematic library, the data in consolidated storage evaluate Urban Operation using model by the application component provided in aggregated application server.
[0006] US11537383B2 (By: Argo AI LLC) Systems, methods, and computer-readable media are disclosed for a systems and methods for improved smart infrastructure data transfer. An example method may involve identifying that a software update is available for a smart infrastructure system. The example method may also involve determining, by a processor of the smart infrastructure system and using a signal strength between a first vehicle and the smart infrastructure system, that the first vehicle is within a threshold range of the smart infrastructure system. The example method may also involve establishing, by the smart infrastructure system, a first ad-hoc peer-to-peer communication link with the first vehicle. The example method may also involve sending, to the vehicle, a request for the software update. The example method may also involve receiving, from the vehicle, at least a first portion of the software update that is transferred using the first ad-hoc peer-to-peer communication link.
[0007] The management of civil administration is a critical component of a smart city. Civil administration includes the functions of local government such as planning, zoning, building codes, and public works. Effective civil administration is necessary for a city to function efficiently and sustainably. However, traditional civil administration methods may not be sufficient to address the complex challenges faced by cities today.
[0008] The present invention proposes a system for managing civil administration in a smart city. The system uses machine learning techniques to collect and analyze data from various sources to monitor and manage the functioning of the city. The system identifies areas for improvement through data analysis and implements solutions to address these areas. The system also monitors the effectiveness of the implemented solutions and provides citizens with a means to report issues and provide feedback on the functioning of the city.
[0009] The proposed system improves the efficiency and sustainability of a smart city by incorporating citizen feedback into the decision-making process. Citizen engagement is essential for the success of a smart city as it provides valuable insights into the needs and concerns of citizens. The proposed system enables citizens to participate in the decision-making process by providing a user interface module that allows them to report issues and provide feedback on the functioning of the city.
[00010] In summary, managing civil administration in a smart city is essential for the efficient and sustainable functioning of a city. The present invention provides a comprehensive system for managing civil administration in a smart city that uses advanced technologies, data analytics, and citizen engagement to improve the functioning of the city.All references, including publications, patent applications, and patents, cited herein are hereby incorporated by reference to the same extent as if each reference were individually and specifically indicated to be incorporated by reference and were set forth in its entirety herein.
Summary
[00011] Various objects, features, and advantages of the disclosed subject matter can be more fully appreciated with reference to the following detailed description of the disclosed subject matter when considered in connection with the following drawings, in which like reference numerals identify like elements.
[00012] The present invention relates to a method and system for managing civil administration in a smart city. More specifically, the present invention provides a data-driven approach to managing the functioning of a smart city by collecting and analyzing data from various sources to identify areas for improvement, implementing solutions to address the identified areas for improvement, and monitoring their effectiveness.
[00013] Embodiments of the present disclosure may include a method for managing civil administration in a smart city, including collecting and analyzing data from various sources to monitor and manage the functioning of the city. Embodiments may also include using the analyzed data to identify and prioritize areas for improvement. Embodiments may also include implementing solutions to address identified areas for improvement. Embodiments may also include monitoring the implementation of the solutions to ensure their effectiveness.
[00014] In some embodiments, the method may include providing a user interface for citizens to report issues and provide feedback on the functioning of the city. In some embodiments, the data collected from various sources includes data from sensors, government agencies, and citizens. In some embodiments, the analyzed data may be used to identify areas for improvement in one or more of the following areas transportation, public safety, healthcare, education, and environmental sustainability. In some embodiments, the solutions implemented to address identified areas for improvement may be selected based on a cost-benefit analysis.
[00015] Embodiments of the present disclosure may also include a system for managing civil administration in a smart city, including a data collection and analysis module for collecting and analyzing data from various sources to monitor and manage the functioning of the city. Embodiments may also include a solution implementation module for implementing solutions to address areas for improvement identified through the data analysis. Embodiments may also include a monitoring module for monitoring the implementation of the solutions to ensure their effectiveness. Embodiments may also include a user interface module for providing citizens with a means to report issues and provide feedback on the functioning of the city. In some embodiments, the system may include a database for storing the collected and analyzed data. In some embodiments, the data collection and analysis module uses machine learning techniques to analyze the collected data.
Brief Description of the Drawings
[00016] The features and advantages of the present disclosure would be more clearly understood from the following description taken in conjunction with the accompanying drawings in which:
[00017] FIG. 1 is a flowchart illustrating a method for managing civil administration in a smart city, according to some embodiments of the present disclosure.
[00018] FIG. 2 is a block diagram illustrating a smart city manamgment system, according to some embodiments of the present disclosure.
Detailed Description
[00019] The following is a detailed description of exemplary embodiments to illustrate the principles of the invention. The embodiments are provided to illustrate aspects of the invention, but the invention is not limited to any embodiment. The scope of the invention encompasses numerous alternatives, modifications and equivalent; it is limited only by the claims.
[00020] In view of the many possible embodiments to which the principles of the present discussion may be applied, it should be recognized that the embodiments described herein with respect to the drawing figures are meant to be illustrative only and should not be taken as limiting the scope of the claims. Therefore, the techniques as described herein contemplate all such embodiments as may come within the scope of the following claims and equivalents thereof.
[00021] The detailed description is described with reference to the accompanying figures. In the figures, the left-most digit(s) of a reference number identifies the figure in which the reference number first appears. The use of the same reference numbers in different instances in the description and the figures may indicate similar or identical items.
[00022] The present invention relates to a method and system for managing civil administration in a smart city. More specifically, the present invention provides a data-driven approach to managing the functioning of a smart city by collecting and analyzing data from various sources to identify areas for improvement, implementing solutions to address the identified areas for improvement, and monitoring their effectiveness.
[00023] Figure 1 is a flowchart that depicts one embodiment of a method for administering civil administration in a smart city. The technique is described in more detail in the following paragraphs. This method is consistent with certain features of the disclosure that has been made at this time. In some implementations, the method may, at step 110, include the process of collecting and analysing data from a number of various sources in order to monitor and manage the operation of the city. This is done so that the city's operations may be better controlled. At around the 120, the procedure might involve making use of the obtained data to assess and rank the various areas that could need some development in the future. Step 130 of the strategy may include putting in place corrective measures to address problematic aspects that have been identified as having room for advancement. At the level 140, the strategy may include monitoring the implementation of the solutions to ensure that they are successful.
[00024] The method may, in certain implementations, include the provision of a user interface for residents to utilise in the reporting of issues and the providing of input regarding the operation of the city. This would allow inhabitants to provide feedback about how the city is run. In some applications, the data obtained from a number of sources may include information that was taken through sensors in addition to data obtained from government agencies and individual people. In some implementations, the examined data may be used to identify weak spots in one or more of the following aspects of the method, and the method may involve the execution of one or more additional stages. These features have a number of different methods in which they might be made better. Among the list of priorities are those pertaining to transportation, public safety, healthcare, educational opportunities, and the protection of the natural environment. The solutions that are put into place to remedy the issue areas that have been identified may, in certain implementations, be selected after completing a cost-benefit analysis to determine which solution will provide the most overall benefit.
[00025] As a block diagram, the system 200 is shown in FIG. 2, which also offers a description of the system in line with different features of the present disclosure. The system 200 may, in some implementations, include a data collection and analysis module 210 for collecting and analysing data from various sources to monitor and manage the functioning of the city. A solution implementation module 220 for implementing solutions to address areas for improvement identified through the data analysis, and a monitoring module 230 for monitoring the implementation of the solutions to ensure that they are effective, and a user interface module 220 for allowing users to interact with the system. In addition, the system 200 may include a user interface module. In certain implementations, the system 200 may be equipped with a database that serves the purpose of storing and organising the information that has been collected and analysed. In certain implementations, the data collection and analysis module could perform analysis on the data that was obtained via the use of machine learning techniques. These techniques are used to analyse the data that was gathered.
[00026] The present invention relates to a system for managing civil administration in a smart city is designed to collect and analyse data from various sources to monitor and manage the functioning of the city. The system comprises data collection and analysis, solution implementation, monitoring, and user interface. A person ordinarily skilled in art may prefer those functional elements may be functionally interlinked (such as over a network interface that include examples Bluetooth, WI-FI, Long area network and the like). The system can provide various benefits, such as improving the quality of life for citizens, optimizing the use of resources, and enhancing the efficiency of the city's functioning. The system can also enable city administrators to make data-driven decisions and implement solutions that are effective and cost-efficient.
[00027] A method for managing civil administration in a smart city may be included in certain embodiments of the present disclosure. This method may comprise collecting and analysing data from a variety of sources in order to monitor and manage the operation of the city. Using the examined data to identify and rank the most important areas in need of development is another possible embodiment. In certain embodiments, it may additionally be necessary to monitor the execution of the solutions in order to guarantee that they are successful.
[00028] The technique may, in certain implementations, comprise the provision of a user interface for residents to use in the reporting of problems and the provision of feedback about the operation of the city. In certain implementations, the data acquired from a variety of sources includes the data received from sensors, as well as data collected from government organisations and individual residents. In some implementations, the studied data are put to use to identify problem areas in one or more of the following domains: transportation, public safety, healthcare, education, and environmental sustainability. In some implementations, the solutions that are put into place to solve the problem areas that have been identified may be chosen after conducting a cost-benefit analysis.
[00029] A system for managing civil administration in a smart city may also be included in embodiments of the present disclosure. Such a system may include a data collection and analysis module for the purpose of collecting and analysing data from a variety of sources in order to monitor and manage the operation of the city. A solution implementation module may also be included in embodiments. This module is used to put into action solutions that solve problem areas that were discovered via data analysis. In certain embodiments, there may additionally be a monitoring module included, which is used to monitor the application of the solutions in order to verify that they are successful. In certain embodiments, there is also a user interface module that gives residents a way to report problems and offer input on how well the city is run. In other embodiments, there is no such module. In some implementations of the system, there is the possibility of there being a database included for the purpose of storing the data that has been gathered and processed. In certain implementations, the data collecting and analysis module performs the analysis of the obtained data by using strategies from the field of machine learning.
[00030] Further, while operations are depicted in a particular order, this should not be understood as requiring that such operations be performed in the particular order shown or in sequential order, or that all illustrated operations be performed, to achieve desirable results. In certain circumstances, multitasking and parallel processing may be advantageous. Likewise, while several specific implementation details are contained in the above discussions, these should not be construed as limitations on the scope of the subject matter described herein, but rather as descriptions of features that may be specific to particular embodiments. Certain features that are described in this specification in the context of separate embodiments can also be implemented in combination in a single embodiment. Conversely, various features that are described in the context of a single embodiment can also be implemented in multiple embodiments separately or in any suitable sub-combination. Moreover, although features may be described above as acting in certain combinations and even initially claimed as such, one or more features from a claimed combination can in some cases be excised from the combination, and the claimed combination may be directed to a sub-combination or variation of a sub-combination.
[00031] The term “memory,” as used herein relates to a volatile or persistent medium, such as a magnetic disk, or optical disk, in which a computer can store data or software for any duration. Optionally, the memory is non-volatile mass storage such as physical storage media. Furthermore, a single memory may encompass and in a scenario wherein computing system is distributed, the processing, memory and/or storage capability may be distributed as well.
[00032] Throughout the present disclosure, the term ‘server’ relates to a structure and/or module that include programmable and/or non-programmable components configured to store, process and/or share information. Optionally, the server includes any arrangement of physical or virtual computational entities capable of enhancing information to perform various computational tasks.
[00033] Throughout the present disclosure, the term “network” relates to an arrangement of interconnected programmable and/or non-programmable components that are configured to facilitate data communication between one or more electronic devices and/or databases, whether available or known at the time of filing or as later developed. Furthermore, the network may include, but is not limited to, one or more peer-to-peer network, a hybrid peer-to-peer network, local area networks (LANs), radio access networks (RANs), metropolitan area networks (MANS), wide area networks (WANs), all or a portion of a public network such as the global computer network known as the Internet, a private network, a cellular network and any other communication system or systems at one or more locations.
[00034] Throughout the present disclosure, the term “process”* relates to any collection or set of instructions executable by a computer or other digital system so as to configure the computer or the digital system to perform a task that is the intent of the process.
[00035] Throughout the present disclosure, the term ‘Artificial intelligence (AI)’ as used herein relates to any mechanism or computationally intelligent system that combines knowledge, techniques, and methodologies for controlling a bot or other element within a computing environment. Furthermore, the artificial intelligence (AI) is configured to apply knowledge and that can adapt it-self and learn to do better in changing environments. Additionally, employing any computationally intelligent technique, the artificial intelligence (AI) is operable to adapt to unknown or changing environment for better performance. The artificial intelligence (AI) includes fuzzy logic engines, decision-making engines, preset targeting accuracy levels, and/or programmatically intelligent software.
Claims
I/We Claim:
1. A method for managing civil administration in a smart city, comprising:
collecting and analyzing data from various sources to monitor and manage the functioning of the city;
using the analyzed data to identify and prioritize areas for improvement;
implementing solutions to address identified areas for improvement;
monitoring the implementation of the solutions to ensure their effectiveness.
2. The method of claim 1, further comprising providing a user interface for citizens to report issues and provide feedback on the functioning of the city.
3. The method of claim 1, wherein the data collected from various sources includes data from sensors, government agencies, and citizens.
4. The method of claim 1, wherein the analyzed data is used to identify areas for improvement in one or more of the following areas: transportation, public safety, healthcare, education, and environmental sustainability.
5. The method of claim 1, wherein the solutions implemented to address identified areas for improvement are selected based on a cost-benefit analysis.
6. A system for managing civil administration in a smart city, comprising:
a data collection and analysis module for collecting and analyzing data from various sources to monitor and manage the functioning of the city;
a solution implementation module for implementing solutions to address areas for improvement identified through the data analysis;
a monitoring module for monitoring the implementation of the solutions to ensure their effectiveness; and
a user interface module for providing citizens with a means to report issues and provide feedback on the functioning of the city.
7. The system of claim 6, further comprising a database for storing the collected and analyzed data.
8. The system of claim 6, wherein the data collection and analysis module uses machine learning techniques to analyze the collected data.
MANAGING CIVIL ADMINISTRATION IN A SMART CITY
Abstract
In some embodiments of the present disclosure, there is the potential for there to be a method provided for administering the civil administration of a smart city. This approach may include gathering data from a wide range of sources and analysing it in order to keep an eye on and maintain control over the functioning of the city. One more feasible form is making use of the data that has been reviewed to determine and rank the most critical areas that need growth. Another potential component of embodiments is the application of solutions to problem areas that have been identified via the process of discovery. It may be required to further monitor the implementation of the solutions in some embodiments in order to ensure that they are effective. This may be the case in certain cases. , Claims:Claims
I/We Claim:
1. A method for managing civil administration in a smart city, comprising:
collecting and analyzing data from various sources to monitor and manage the functioning of the city;
using the analyzed data to identify and prioritize areas for improvement;
implementing solutions to address identified areas for improvement;
monitoring the implementation of the solutions to ensure their effectiveness.
2. The method of claim 1, further comprising providing a user interface for citizens to report issues and provide feedback on the functioning of the city.
3. The method of claim 1, wherein the data collected from various sources includes data from sensors, government agencies, and citizens.
4. The method of claim 1, wherein the analyzed data is used to identify areas for improvement in one or more of the following areas: transportation, public safety, healthcare, education, and environmental sustainability.
5. The method of claim 1, wherein the solutions implemented to address identified areas for improvement are selected based on a cost-benefit analysis.
6. A system for managing civil administration in a smart city, comprising:
a data collection and analysis module for collecting and analyzing data from various sources to monitor and manage the functioning of the city;
a solution implementation module for implementing solutions to address areas for improvement identified through the data analysis;
a monitoring module for monitoring the implementation of the solutions to ensure their effectiveness; and
a user interface module for providing citizens with a means to report issues and provide feedback on the functioning of the city.
7. The system of claim 6, further comprising a database for storing the collected and analyzed data.
8. The system of claim 6, wherein the data collection and analysis module uses machine learning techniques to analyze the collected data.
| # | Name | Date |
|---|---|---|
| 1 | 202311027518-REQUEST FOR EARLY PUBLICATION(FORM-9) [14-04-2023(online)].pdf | 2023-04-14 |
| 2 | 202311027518-POWER OF AUTHORITY [14-04-2023(online)].pdf | 2023-04-14 |
| 3 | 202311027518-OTHERS [14-04-2023(online)].pdf | 2023-04-14 |
| 4 | 202311027518-FORM-9 [14-04-2023(online)].pdf | 2023-04-14 |
| 5 | 202311027518-FORM FOR SMALL ENTITY(FORM-28) [14-04-2023(online)].pdf | 2023-04-14 |
| 6 | 202311027518-FORM 1 [14-04-2023(online)].pdf | 2023-04-14 |
| 7 | 202311027518-EVIDENCE FOR REGISTRATION UNDER SSI(FORM-28) [14-04-2023(online)].pdf | 2023-04-14 |
| 8 | 202311027518-EDUCATIONAL INSTITUTION(S) [14-04-2023(online)].pdf | 2023-04-14 |
| 9 | 202311027518-DRAWINGS [14-04-2023(online)].pdf | 2023-04-14 |
| 10 | 202311027518-DECLARATION OF INVENTORSHIP (FORM 5) [14-04-2023(online)].pdf | 2023-04-14 |
| 11 | 202311027518-COMPLETE SPECIFICATION [14-04-2023(online)].pdf | 2023-04-14 |