IP Library Granted Patent US 11,250,383
Granted Patent B2
US 11,250,383 · App. 16/192,427 · Granted Feb 15, 2022

Automated clinical documentation system and method

Inventors: Dushyant Sharma (Woburn, MA); Patrick A. Naylor (Reading, GB); Uwe Helmut Jost (Groton, MA)
Assignee: NUANCE COMMUNICATIONS, INC.
G06Q10/10G06F3/165G06F40/117G06F40/30G06T7/20G10L15/22G10L15/26G10L15/30G10L25/45G10L25/51G16H10/20G16H10/40G16H10/60G16H15/00G16H50/70H04R1/406H04R3/005G06T2207/30196
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Quick Facts
Patent No.
US 11,250,383
App. No.
16/192,427
Granted
Feb 15, 2022
Kind
B2
Abstract

A method, computer program product, and computing system for determining a time delay between a first audio signal received on a first audio detection system and a second audio signal received on a second audio detection system. The first and second audio detection systems are located within a monitored space. The first audio detection system is located with respect to the second audio detection system within the monitored space.

Claims (42)

1. A computer-implemented method executed on a computer comprising:

determining a time delay between when an audio signal from an encounter participant is received at one or more microphones on a first audio detection system and when the audio signal from the encounter participant is received at one or more microphones on a second audio detection system, wherein the first and second audio detection systems are located within a monitored space, and wherein the first audio detection system includes a body worn audio detection system positioned within the monitored space and worn by the encounter participant, wherein the body worn audio detection system includes the one or more microphones of the first audio detection system;

locating the first audio detection system with respect to the second audio detection system within the monitored space based upon, at least in part, the time delay between when the audio signal from the encounter participant is received on the first audio detection system and when the audio signal from the encounter participant is received on the second audio detection system, wherein locating the first audio detection system with respect to the second audio detection system within the monitored space includes defining a linear distance between the first audio detection system worn by the encounter participant and the second audio detection system based, at least in part, upon the time delay; and

processing the audio signal, wherein the audio signal includes a first audio encounter information and a second audio encounter information, wherein processing the audio signal includes canceling interference between the first audio encounter information and the second audio encounter information.

2. The computer-implemented method of claim 1 wherein locating the first audio detection system with respect to the second audio detection system within the monitored space further includes:

defining an angular location for the first audio detection system with respect to the second audio detection system.

3. The computer-implemented method of claim 2 wherein the second audio detection system includes:

a fixed-location audio detection system positioned within the monitored space.

4. The computer-implemented method of claim 3 wherein the fixed-location audio detection system includes a microphone array.

5. The computer-implemented method of claim 4 wherein defining an angular location for the first audio detection system with respect to the second audio detection system includes:

forming at least one audio recording beam via the microphone array of the fixed location audio detection system;

steering the at least one audio recording beam toward the first audio detection system; and

determining the angle of the at least one audio recording beam with respect to the fixed location audio detection system.

6. A computer program product residing on a non-transitory computer readable medium having a plurality of instructions stored thereon which, when executed by a processor, cause the processor to perform operations comprising:

determining a time delay between when an audio signal from an encounter participant is received at one or more microphones on a first audio detection system and when the audio signal from the encounter participant is received at one or more microphones on a second audio detection system, wherein the first and second audio detection systems are located within a monitored space, and wherein the first audio detection system includes a body worn audio detection system positioned within the monitored space and worn by the encounter participant, wherein the body worn audio detection system includes the one or more microphones of the first audio detection system;

locating the first audio detection system with respect to the second audio detection system within the monitored space based upon, at least in part, the time delay between when the audio signal from the encounter participant is received on the first audio detection system and when the audio signal from the encounter participant is received on the second audio detection system, wherein locating the first audio detection system with respect to the second audio detection system within the monitored space includes defining a linear distance between the first audio detection system worn by the encounter participant and the second audio detection system based, at least in part, upon the time delay; and

processing the audio signal, wherein the audio signal includes a first audio encounter information and a second audio encounter information, wherein processing the audio signal includes canceling interference between the first audio encounter information and the second audio encounter information.

7. The computer program product of claim 6 wherein locating the first audio detection system with respect to the second audio detection system within the monitored space further includes:

defining an angular location for the first audio detection system with respect to the second audio detection system.

8. The computer program product of claim 7 wherein the second audio detection system includes:

a fixed-location audio detection system positioned within the monitored space.

9. The computer program product of claim 8 wherein the fixed-location audio detection system includes a microphone array.

10. The computer program product of claim 9 wherein defining an angular location for the first audio detection system with respect to the second audio detection system includes:

forming at least one audio recording beam via the microphone array of the fixed location audio detection system;

steering the at least one audio recording beam toward the first audio detection system; and

determining the angle of the at least one audio recording beam with respect to the fixed location audio detection system.

11. A computing system including a processor and memory configured to perform operations comprising:

determining a time delay between when an audio signal from an encounter participant is received at one or more microphones on a first audio detection system and when the audio signal from the encounter participant is received at one or more microphones on a second audio detection system, wherein the first and second audio detection systems are located within a monitored space, and wherein the first audio detection system includes a body worn audio detection system positioned within the monitored space and worn by the encounter participant, wherein the body worn audio detection system includes the one or more microphones of the first audio detection system;

locating the first audio detection system with respect to the second audio detection system within the monitored space based upon, at least in part, the time delay between when the audio signal from the encounter participant is received on the first audio detection system and when the audio signal from the encounter participant is received on the second audio detection system, wherein locating the first audio detection system with respect to the second audio detection system within the monitored space includes defining a linear distance between the first audio detection system worn by the encounter participant and the second audio detection system based, at least in part, upon the time delay; and

processing the audio signal, wherein the audio signal includes a first audio encounter information and a second audio encounter information, wherein processing the audio signal includes canceling interference between the first audio encounter information and the second audio encounter information.

12. The computing system of claim 11 wherein locating the first audio detection system with respect to the second audio detection system within the monitored space further includes:

defining an angular location for the first audio detection system with respect to the second audio detection system.

13. The computing system of claim 12 wherein the second audio detection system includes:

a fixed-location audio detection system positioned within the monitored space.

14. The computing system of claim 13 wherein the fixed-location audio detection system includes a microphone array.

15. The computer-implemented method of claim 14 wherein defining an angular location for the first audio detection system with respect to the second audio detection system includes:

forming at least one audio recording beam via the microphone array of the fixed location audio detection system;

steering the at least one audio recording beam toward the first audio detection system; and

determining the angle of the at least one audio recording beam with respect to the fixed location audio detection system.

16. The computer-implemented method of claim 1 wherein locating the first audio detection system with respect to the second audio detection system within the monitored space further includes using a polar coordinate with the linear distance between the first audio detection system worn by the encounter participant and the second audio detection system.

17. The computer-implemented method of claim 1 wherein the second audio detection system includes one microphone having a known and a fixed location.

18. The computer-implemented method of claim 17 wherein locating the first audio detection system with respect to the second audio detection system within the monitored space is based upon, at least in part, triangulation.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 9, 2023
From: NUANCE COMMUNICATIONS, INC.
To: MICROSOFT TECHNOLOGY LICENSING, LLC
Reel/Frame 065532/0152 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 5, 2019
From: SHARMA, DUSHYANT; NAYLOR, PATRICK A; JOST, UWE HELMUT
To: NUANCE COMMUNICATIONS, INC.
Reel/Frame 048235/0701 →
Continuity (2)
Provisional Application 62638809 · Mar 5, 2018
Related Publication 20190272844A1 · Sep 5, 2019
Cited By (1)
US 12,354,497