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Method And System For Dynamically Controlling Transmit Power Of A Wireless Transmitter

Abstract: A method and system for dynamically controlling transmit power of a wireless transmitter includes determining a set of sensors based on a location of each of a plurality of sensors, a location of the wireless transmitter, and a maximum range of the wireless transmitter. The method further includes determining a change in power level and a change in interference level at each of the set of sensors based on a plurality of power measurements and a plurality of interference measurements, within a predefined response time, for each of the set of sensors, determining a required change in a transmit power level of the wireless transmitter based on the change in power level and the change in interference level at each of the set of sensors, and dynamically effecting a change in the transmit power of the wireless transmitter based on the required change. Figure 3

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Notices, Deadlines & Correspondence

Patent Information

Application #
Filing Date
30 November 2017
Publication Number
22/2019
Publication Type
INA
Invention Field
COMMUNICATION
Status
Email
bangalore@knspartners.com
Parent Application
Patent Number
Legal Status
Grant Date
2023-12-18
Renewal Date

Applicants

WIPRO LIMITED
Doddakannelli, Sarjapur Road, Bangalore 560035, Karnataka, India.

Inventors

1. SURENDRAN RAJENDRAN
E 105, TCP Lake Front, Model School Road, Sholinganallur, Chennai - 600119, Tamil Nadu
2. ADARSH PATTAR
C/o P R SHIRUR, H. No:661, Kanakadas Colony, Bijapur - 586101, Karnataka, India

Specification

Claims:WE CALIM
1. A method of dynamically controlling a transmit power of a wireless transmitter, the method comprising:
determining, by a transmit power control device, a set of sensors based on a location of each of a plurality of sensors, a location of the wireless transmitter, and a maximum range of the wireless transmitter;
determining, by the transmit power control device, a change in power level and a change in interference level at each of the set of sensors based on a plurality of power measurements and a plurality of interference measurements, within a predefined response time, for each of the set of sensors;
determining, by the transmit power control device, a required change in a transmit power level of the wireless transmitter based on the change in power level and the change in interference level at each of the set of sensors; and
dynamically effecting, by the transmit power control device, a change in the transmit power of the wireless transmitter based on the required change.

2. The method of claim 1, wherein determining the set of sensors comprises:
determining a distance between the wireless transmitter and each of the plurality of sensors; and
selecting the set of sensors based on a minimum distance and a maximum distance within the maximum range of the wireless transmitter.

3. The method of claim 1, wherein determining the change in power level and the change in interference level at each of the set of sensors comprises:
computing an average power measurement and an average interference measurement within the predefined response time;
comparing the average power measurement with a set of power thresholds and the average interference measurement with a set of interference thresholds; and
determining the change in power level and the change in interference level based on the comparison.

4. The method of claim 3, wherein the set of power thresholds and the set of interference thresholds are determined based on at least one of maximum likelihood, receiver operating characteristics (ROC), or other change detection techniques.

5. The method of claim 1, wherein determining the required change in the transmit power level of the wireless transmitter comprises referring to a predefined look-up table.

6. The method of claim 1, wherein the change in the transmit power of the wireless transmitter for the required change in transmit power level is predefined or empirically determined.

7. The method of claim 1, further comprising updating a state table with the change in power level and the change in interference level at each of the set of sensors along with a time stamp and the location of the wireless transmitter.

8. The method of claim 7, further comprising analyzing the state table to identify at least one of a temporal pattern, and a spatial pattern.

9. The method of claim 8, further comprising dynamically updating a predefined look-up table for the required change in transmit power level of the wireless transmitter based on the analysis.

10. The method of claim 9, further comprising determining an optimal transmit power of the wireless transmitter based on a current transmit power of the wireless transmitter and a sum total of required changes in transmit power level of the wireless transmitter.

11. A system for dynamically controlling a transmit power of a wireless transmitter, the system comprising:
a transmit power control device comprising at least one processor and a computer-readable medium storing instructions that, when executed by the at least one processor, cause the at least one processor to perform operations comprising:
determining a set of sensors based on a location of each of a plurality of sensors, a location of the wireless transmitter, and a maximum range of the wireless transmitter;
determining a change in power level and a change in interference level at each of the set of sensors based on a plurality of power measurements and a plurality of interference measurements, within a predefined response time, for each of the set of sensors;
determining a required change in a transmit power level of the wireless transmitter based on the change in power level and the change in interference level at each of the set of sensors; and
dynamically effecting a change in the transmit power of the wireless transmitter based on the required change.

12. The system of claim 11, wherein determining the set of sensors comprises:
determining a distance between the wireless transmitter and each of the plurality of sensors; and
selecting the set of sensors based on a minimum distance and a maximum distance within the maximum range of the wireless transmitter.

13. The system of claim 11, wherein determining the change in power level and the change in interference level at each of the set of sensors comprises:
computing an average power measurement and an average interference measurement within the predefined response time;
comparing the average power measurement with a set of power thresholds and the average interference measurement with a set of interference thresholds; and
determining the change in power level and the change in interference level based on the comparison.

14. The system of claim 11, wherein determining the required change in the transmit power level of the wireless transmitter comprises referring to a predefined look-up table.

15. The system of claim 11, wherein the operations further comprise:
updating a state table with the change in power level and the change in interference level at each of the set of sensors along with a time stamp and the location of the wireless transmitter;
analyzing the state table to identify at least one of a temporal pattern, and a spatial pattern; and
dynamically updating a predefined look-up table for the required change in transmit power level of the wireless transmitter based on the analysis.

Dated this 30th day of November, 2017

Swetha SN
Of K&S Partners
Agent for the Applicant
, Description:TECHNICAL FIELD
This disclosure relates generally to wireless transmitter, and more particularly to method and system for dynamically controlling transmit power of a wireless transmitter.

Documents

Application Documents

# Name Date
1 201741043087-PROOF OF ALTERATION [18-03-2024(online)].pdf 2024-03-18
1 201741043087-STATEMENT OF UNDERTAKING (FORM 3) [30-11-2017(online)].pdf 2017-11-30
2 201741043087-IntimationOfGrant18-12-2023.pdf 2023-12-18
2 201741043087-REQUEST FOR EXAMINATION (FORM-18) [30-11-2017(online)].pdf 2017-11-30
3 201741043087-POWER OF AUTHORITY [30-11-2017(online)].pdf 2017-11-30
3 201741043087-PatentCertificate18-12-2023.pdf 2023-12-18
4 201741043087-FORM 18 [30-11-2017(online)].pdf 2017-11-30
4 201741043087-CLAIMS [01-09-2020(online)].pdf 2020-09-01
5 201741043087-FORM 1 [30-11-2017(online)].pdf 2017-11-30
5 201741043087-COMPLETE SPECIFICATION [01-09-2020(online)].pdf 2020-09-01
6 201741043087-DRAWINGS [30-11-2017(online)].pdf 2017-11-30
6 201741043087-CORRESPONDENCE [01-09-2020(online)].pdf 2020-09-01
7 201741043087-FER_SER_REPLY [01-09-2020(online)].pdf 2020-09-01
7 201741043087-DECLARATION OF INVENTORSHIP (FORM 5) [30-11-2017(online)].pdf 2017-11-30
8 201741043087-FORM 3 [01-09-2020(online)].pdf 2020-09-01
8 201741043087-COMPLETE SPECIFICATION [30-11-2017(online)].pdf 2017-11-30
9 201741043087-Information under section 8(2) [01-09-2020(online)].pdf 2020-09-01
9 201741043087-REQUEST FOR CERTIFIED COPY [01-12-2017(online)].pdf 2017-12-01
10 201741043087-OTHERS [01-09-2020(online)].pdf 2020-09-01
10 201741043087-Proof of Right (MANDATORY) [07-02-2018(online)].pdf 2018-02-07
11 201741043087-PETITION UNDER RULE 137 [01-09-2020(online)].pdf 2020-09-01
11 Correspondence by Agent_Form 1_09-02-2018.pdf 2018-02-09
12 201741043087-FER.pdf 2020-03-02
12 201741043087-RELEVANT DOCUMENTS [01-09-2020(online)].pdf 2020-09-01
13 201741043087-FER.pdf 2020-03-02
13 201741043087-RELEVANT DOCUMENTS [01-09-2020(online)].pdf 2020-09-01
14 201741043087-PETITION UNDER RULE 137 [01-09-2020(online)].pdf 2020-09-01
14 Correspondence by Agent_Form 1_09-02-2018.pdf 2018-02-09
15 201741043087-OTHERS [01-09-2020(online)].pdf 2020-09-01
15 201741043087-Proof of Right (MANDATORY) [07-02-2018(online)].pdf 2018-02-07
16 201741043087-Information under section 8(2) [01-09-2020(online)].pdf 2020-09-01
16 201741043087-REQUEST FOR CERTIFIED COPY [01-12-2017(online)].pdf 2017-12-01
17 201741043087-FORM 3 [01-09-2020(online)].pdf 2020-09-01
17 201741043087-COMPLETE SPECIFICATION [30-11-2017(online)].pdf 2017-11-30
18 201741043087-FER_SER_REPLY [01-09-2020(online)].pdf 2020-09-01
18 201741043087-DECLARATION OF INVENTORSHIP (FORM 5) [30-11-2017(online)].pdf 2017-11-30
19 201741043087-DRAWINGS [30-11-2017(online)].pdf 2017-11-30
19 201741043087-CORRESPONDENCE [01-09-2020(online)].pdf 2020-09-01
20 201741043087-FORM 1 [30-11-2017(online)].pdf 2017-11-30
20 201741043087-COMPLETE SPECIFICATION [01-09-2020(online)].pdf 2020-09-01
21 201741043087-FORM 18 [30-11-2017(online)].pdf 2017-11-30
21 201741043087-CLAIMS [01-09-2020(online)].pdf 2020-09-01
22 201741043087-POWER OF AUTHORITY [30-11-2017(online)].pdf 2017-11-30
22 201741043087-PatentCertificate18-12-2023.pdf 2023-12-18
23 201741043087-REQUEST FOR EXAMINATION (FORM-18) [30-11-2017(online)].pdf 2017-11-30
23 201741043087-IntimationOfGrant18-12-2023.pdf 2023-12-18
24 201741043087-STATEMENT OF UNDERTAKING (FORM 3) [30-11-2017(online)].pdf 2017-11-30
24 201741043087-PROOF OF ALTERATION [18-03-2024(online)].pdf 2024-03-18

Search Strategy

1 searchstrtaegy_04-02-2020.pdf

ERegister / Renewals

3rd: 15 Mar 2024

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4th: 15 Mar 2024

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