IP Library Granted Patent US 11,134,350
Granted Patent B2
US 11,134,350 · App. 16/739,531 · Granted Sep 28, 2021

Dual wireless audio streams transmission allowing for spatial diversity or own voice pickup (OVPU)

Inventors: Amre El-Hoiydi (Neuchatel, CH); Evert Dijkstra (Neuchatel, CH); Hilmar Meier (Zurich, CH); Sebastian Stenzel (Stafa, CH); Timothee Jost (Auvernier, CH)
Assignee: SONOVA AG
H04R25/505H04B7/0408H04R25/554H04R2225/43H04R2225/55
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Quick Facts
Patent No.
US 11,134,350
App. No.
16/739,531
Granted
Sep 28, 2021
Kind
B2
Abstract

Provided is an audio transmission method between at least two audio communication systems including a transmitting audio communication system with first and second audio transmitting devices and a receiving audio communication system with at least one audio receiving device. The method includes transmitting a first wireless audio stream, via a first wireless audio link, by the first audio transmitting device and a second wireless audio stream, via a second wireless audio link, by the second audio transmitting device; and selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream based on quality parameters of the first audio link and the second wireless audio link.

Claims (38)

1. An audio transmission method between at least two audio communication systems including a transmitting audio communication system and a receiving audio communication system, wherein the transmitting audio communication system comprises a first audio transmitting device and a second audio transmitting device, and the receiving audio communication system comprises at least one audio receiving device, the method comprising:

transmitting a first wireless audio stream, via a first wireless audio link, by the first audio transmitting device and a second wireless audio stream, via a second wireless audio link, by the second audio transmitting device; and

selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream based on quality parameters of the first wireless audio link and/or the second wireless audio link,

wherein at least one of the first wireless audio stream or the second wireless audio stream contains a voice of a first user of the first audio transmitting device and the second audio transmitting device, said voice being captured by at least one microphone of the first audio transmitting device and the second audio transmitting device.

2. The audio transmission method according to claim 1 , wherein at least one of the first audio transmitting device or the second audio transmitting device is configured to be worn by the first user, and wherein the at least one audio receiving device is configured to be worn by a second user.

3. The audio transmission method according to claim 1 , wherein each audio data packet of the first wireless audio stream and the second wireless audio stream is transmitted in a separate time slot of a Time Division Multiple Access (TDMA) frame.

4. The audio transmission method according to claim 1 , wherein the selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream, comprises selecting the first wireless audio stream when a quality parameter of the first wireless audio link is above a pre-defined quality threshold or better than a quality parameter of the second wireless audio link.

5. The audio transmission method according to claim 1 , wherein the selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream, comprises selecting the second wireless audio stream when a quality parameter of the second wireless audio link is above a pre-defined quality threshold or better than a quality parameter of the first wireless audio link.

6. The audio transmission method according to claim 1 , wherein the quality parameter of the first wireless audio link and the quality parameter of the second wireless audio link are link quality parameters comprising audio received signal strength, audio signal strength to noise ratio, or packet error rate.

7. The audio transmission method according to claim 1 , wherein the quality parameter of the first wireless audio link and the quality parameter of the second wireless audio link are audio quality parameters comprising signal to noise ratio.

8. The audio transmission method according to claim 1 , wherein the first wireless audio stream and the second wireless audio stream are both transmitted as audio data packets, and wherein a transmission of at least some of the audio data packets overlaps in time, but not in frequency.

9. An audio transmission method between at least two audio communication systems including a transmitting audio communication system and a receiving audio communication system, wherein the transmitting audio communication system comprises a first audio transmitting device and a second audio transmitting device, and the receiving audio communication system comprises a at least one audio receiving device, the method comprising:

transmitting a first wireless audio stream, via a first wireless audio link, by the first audio transmitting device and a second wireless audio stream, via a second wireless audio link, by the second audio transmitting device;

selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream based on quality parameters of the first wireless audio link and/or the second wireless audio link; and

when the at least one audio receiving device selects both the first wireless audio stream and the second wireless audio stream, applying a signal processing algorithm exploiting both the first wireless audio stream and the second wireless audio stream, the signal processing algorithm improving a signal to noise ratio of an own voice pickup signal,

wherein at least one of the first wireless audio stream or the second wireless audio stream contains a voice of a first user of the first audio transmitting device and the second audio transmitting device, said voice being captured by at least one microphone of the first audio transmitting device and the second audio transmitting device.

10. The audio transmission method according to claim 9 , wherein at least one of the first audio transmitting device or the second audio transmitting device is configured to be worn by the first user, and wherein the at least one audio receiving device is configured to be worn by a second user.

11. The audio transmission method according to claim 9 , wherein the selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream, comprises selecting the first wireless audio stream when a quality parameter of the first wireless audio link is above a pre-defined quality threshold or better than a quality parameter of the second wireless audio link.

12. The audio transmission method according to claim 9 , wherein the selecting, by the at least one audio receiving device, one of the first wireless audio stream or the second wireless audio stream, comprises selecting the second wireless audio stream when a quality parameter of the second wireless audio link is above a pre-defined quality threshold or better than a quality parameter of the first wireless audio link.

13. The audio transmission method according to claim 9 , wherein the quality parameter of the first wireless audio link and the quality parameter of the second wireless audio link are link quality parameters comprising audio received signal strength, audio signal strength to noise ratio, or packet error rate.

14. The audio transmission method according to claim 9 , wherein the quality parameter of the first wireless audio link and the quality parameter of the second wireless audio link are audio quality parameters comprising signal to noise ratio.

15. The audio transmission method according to claim 9 , wherein the signal processing algorithm is a binaural beamforming algorithm or a blind source separation algorithm.

16. The audio transmission method according to claim 15 , wherein the binaural beamforming algorithm is performed at the receiving audio communication system.

17. The audio transmission method according to claim 9 , wherein the first wireless audio stream and the second wireless audio stream are both transmitted as audio data packets, and wherein a transmission of at least some of the audio data packets does not overlap in time.

18. An audio communication network comprising:

a first audio communication system including a first audio transmitting device and a second audio transmitting device, and

a second audio communication system including at least one audio receiving device, wherein:

the first audio transmitting device and the second audio transmitting device are configured to transmit a first wireless audio stream, via a first wireless audio link, and a second wireless audio stream, via a second wireless audio link, respectively; and

the at least one audio receiving device is configured to select one of the first wireless audio stream or the second wireless audio stream based on quality parameters of the first wireless audio link and/or the second wireless audio link,

wherein at least one of the first wireless audio stream or the second wireless audio stream contains a voice of a first user of the first audio transmitting device and the second audio transmitting device, said voice being captured by at least one microphone of the first audio transmitting device and the second audio transmitting device.

19. The audio communication network according to claim 18 , wherein the first audio transmitting device and the second audio transmitting device are configured to be respectively worn at one of each ear of the first user.

20. The audio communication network according to claim 18 , wherein the at least one audio receiving device is configured to be worn by a second user.

21. The audio communication network according to claim 18 , wherein each audio data packet of the first wireless audio stream and the second wireless audio stream is transmitted in a separate time slot of a Time Division Multiple Access (TDMA) frame.

22. An audio transmission method between at least two audio communication systems including a transmitting audio communication system and a receiving audio communication system, wherein the transmitting audio communication system comprises a first audio transmitting device and a second audio transmitting device, and the receiving audio communication system comprises at least one audio receiving device, the method comprising:

transmitting a first wireless audio stream, via a first wireless audio link, by the first audio transmitting device and a second wireless audio stream, via a second wireless audio link, by the second audio transmitting device; and

receiving, at the at least one audio receiving device both the first wireless audio stream and the second wireless audio stream, and applying a signal processing algorithm exploiting both the first wireless audio stream and the second wireless audio stream, the signal processing algorithm improving a signal to noise ratio of an own voice pickup signal,

wherein at least one of the first wireless audio stream or the second wireless audio stream contains a voice of a first user of the first audio transmitting device and the second audio transmitting device, said voice being captured by at least one microphone of the first audio transmitting device and the second audio transmitting device.

23. The audio communication network according to claim 22 , wherein each audio data packet of the first wireless audio stream and the second wireless audio stream is transmitted in a separate time slot of a Time Division Multiple Access (TDMA) frame.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 28, 2020
From: EL-HOIYDI, AMRE; DIJKSTRA, EVERT; MEIER, HILMAR; STENZEL, SEBASTIAN; JOST, TIMOTHEE
To: SONOVA AG
Reel/Frame 054197/0613 →
Continuity (1)
Related Publication 20210219065A1 · Jul 15, 2021
Cited By (1)
US 12,464,320