IP Library Granted Patent US 11,825,401
Granted Patent B2
US 11,825,401 · App. 17/373,104 · Granted Nov 21, 2023

Systems and methods for wirelessly modifying detection characteristics of portable devices

Inventors: Anand Jain (Ellicott City, MD); John Stavropoulos (Edison, NJ); Alan Neuhauser (Silver Spring, MD); Wendell Lynch (East Lansing, MI); Vladimir Kuznetsov (Ellicott City, MD); Jack Crystal (Owings Mills, MD); David Gish (Riverdale, NJ)
Assignee: The Nielsen Company (US), LLC
H04W48/04H04M1/72412H04N21/00G06Q30/02H04M1/6008
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Quick Facts
Patent No.
US 11,825,401
App. No.
17/373,104
Granted
Nov 21, 2023
Kind
B2
Abstract

Example systems, methods, apparatus and articles of manufacture for wirelessly modifying detection characteristics of portable devices are disclosed herein. Example portable devices include example radio circuitry and example processor circuitry. In disclosed examples, the example processor circuitry is to cause the radio circuitry to scan for radio frequency beacons. The example processor circuitry is also to trigger activation of audio monitoring via a microphone of the portable device in response to establishment of a first connection with a first radio frequency beacon, the audio monitoring to at least one of detect an audio code or generate an audio signature. The example processor circuitry is further to cause the audio monitoring to stop in response to establishment of a second connection with a second radio frequency beacon different from the first radio frequency beacon.

Claims (39)

1. A portable device comprising:

radio circuitry;

at least one memory;

instructions in the portable device; and

processor circuitry to execute the instructions to at least:

cause the radio circuitry to scan for radio frequency beacons;

trigger activation of audio monitoring via a microphone of the portable device in response to establishment of a first connection with a first radio frequency beacon, the audio monitoring to at least one of detect an audio code or generate an audio signature; and

cause the audio monitoring to stop in response to establishment of a second connection with a second radio frequency beacon different from the first radio frequency beacon.

2. The portable device of claim 1 , wherein the processor circuitry is to cause the radio circuitry to:

scan at a first scanning rate prior to the establishment of the first connection with the first radio frequency beacon; and

scan at a second scanning rate after the establishment of the first connection with the first radio frequency beacon.

3. The portable device of claim 2 , wherein the processor circuitry is to cause the radio circuitry to scan at a third scanning rate after the establishment of the second connection with the second radio frequency beacon.

4. The portable device of claim 1 , wherein the processor circuitry is to update the audio monitoring in response to establishment of a third connection with a third radio frequency beacon.

5. The portable device of claim 4 , wherein the processor circuitry is to trigger the activation of the audio monitoring to have a first configuration, and update the audio monitoring to have a second configuration different from the first configuration.

6. The portable device of claim 5 , wherein the first configuration is to specify at least one of a first type of code detection or a first type of signature generation to be performed on an output of the microphone, and the second configuration is to specify at least one of a second type of code detection or a second type of signature generation to be performed on the output of the microphone, the second type of code detection different from the first type of code detection, the second type of signature generation different from the first type of signature generation.

7. The portable device of claim 6 , wherein the first type of code detection is based on a first plurality of signal frequencies, and the second type of code detection is based on a second plurality of signal frequencies.

8. An article of manufacture comprising computer readable instructions that, when executed, cause at least one processor of a portable device to at least:

cause radio circuitry of the portable device to scan for radio frequency beacons;

trigger activation of audio monitoring via a microphone of the portable device in response to establishment of a first connection with a first radio frequency beacon, the audio monitoring to at least one of detect an audio code or generate an audio signature; and

cause the audio monitoring to stop in response to establishment of a second connection with a second radio frequency beacon different from the first radio frequency beacon.

9. The article of manufacture of claim 8 , wherein the instructions are to cause the at least one processor to cause the radio circuitry to:

scan at a first scanning rate prior to the establishment of the first connection with the first radio frequency beacon; and

scan at a second scanning rate after the establishment of the first connection with the first radio frequency beacon.

10. The article of manufacture of claim 9 , wherein the instructions are to cause the at least one processor to cause the radio circuitry to scan at a third scanning rate after the establishment of the second connection with the second radio frequency beacon.

11. The article of manufacture of claim 8 , wherein the instructions are to cause the at least one processor to update the audio monitoring in response to establishment of a third connection with a third radio frequency beacon.

12. The article of manufacture of claim 11 , wherein the instructions are to cause the at least one processor to trigger the activation of the audio monitoring to have a first configuration, and update the audio monitoring to have a second configuration different from the first configuration.

13. The article of manufacture of claim 12 , wherein the first configuration is to specify at least one of a first type of code detection or a first type of signature generation to be performed on an output of the microphone, and the second configuration is to specify at least one of a second type of code detection or a second type of signature generation to be performed on the output of the microphone, the second type of code detection different from the first type of code detection, the second type of signature generation different from the first type of signature generation.

14. The article of manufacture of claim 13 , wherein the first type of code detection is based on a first plurality of signal frequencies, and the second type of code detection is based on a second plurality of signal frequencies.

15. A method comprising:

scanning for radio frequency beacons with radio circuitry of a portable device;

triggering, by executing an instruction with at least one processor, activation of audio monitoring via a microphone of the portable device in response to establishing a first connection with a first radio frequency beacon, the audio monitoring including at least one of detecting an audio code or generating an audio signature; and

stopping, by executing an instruction with the at least one processor, the audio monitoring in response to establishing a second connection with a second radio frequency beacon different from the first radio frequency beacon.

16. The method of claim 15 , wherein the scanning includes:

scanning at a first scanning rate prior to the establishing of the first connection with the first radio frequency beacon; and

scanning at a second scanning rate after the establishing of the first connection with the first radio frequency beacon.

17. The method of claim 16 , wherein the scanning includes scanning at a third scanning rate after the establishing of the second connection with the second radio frequency beacon.

18. The method of claim 15 , further including updating the audio monitoring in response to establishing a third connection with a third radio frequency beacon.

19. The method of claim 18 , wherein the audio monitoring is triggered to have a first configuration, and the audio monitoring is updated to have a second configuration different from the first configuration.

20. The method of claim 19 , wherein the first configuration specifies at least one of a first type of code detection or a first type of signature generation to be performed on an output of the microphone, and the second configuration specifies at least one of a second type of code detection or a second type of signature generation to be performed on the output of the microphone, the second type of code detection different from the first type of code detection, the second type of signature generation different from the first type of signature generation.

Assignments (6)
SECURITY INTEREST Recorded May 8, 2023
From: GRACENOTE DIGITAL VENTURES, LLC; GRACENOTE MEDIA SERVICES, LLC; GRACENOTE, INC.; TNC (US) HOLDINGS, INC.; THE NIELSEN COMPANY (US), LLC
To: ARES CAPITAL CORPORATION
Reel/Frame 063574/0632 →
SECURITY INTEREST Recorded Apr 28, 2023
From: GRACENOTE DIGITAL VENTURES, LLC; GRACENOTE MEDIA SERVICES, LLC; GRACENOTE, INC.; TNC (US) HOLDINGS, INC.; THE NIELSEN COMPANY (US), LLC
To: CITIBANK, N.A.
Reel/Frame 063561/0381 →
SECURITY AGREEMENT Recorded Jan 31, 2023
From: GRACENOTE DIGITAL VENTURES, LLC; GRACENOTE MEDIA SERVICES, LLC; GRACENOTE, INC.; TNC (US) HOLDINGS, INC.; THE NIELSEN COMPANY (US), LLC
To: BANK OF AMERICA, N.A.
Reel/Frame 063560/0547 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2022
From: JAIN, ANAND; STAVROPOULOS, JOHN; NEUHAUSER, ALAN; LYNCH, WENDELL; KUZNETSOV, VLADIMIR; CRYSTAL, JACK; GISH, DAVID
To: ARBITRON INC.
Reel/Frame 060541/0550 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 19, 2022
From: NIELSEN AUDIO, INC.
To: THE NIELSEN COMPANY (US), LLC
Reel/Frame 060541/0627 →
CHANGE OF NAME Recorded Jul 19, 2022
From: ARBITRON INC.
To: NIELSEN AUDIO, INC.
Reel/Frame 060715/0552 →
Continuity (4)
Continuation 16852097 · Apr 17, 2020
Continuation 15997391 · Jun 4, 2018
Continuation 13657380 · Oct 22, 2012
Related Publication 20210345224A1 · Nov 4, 2021