IP Library › Granted Patent US 11,924,717
Granted Patent B2
US 11,924,717 · App. 17/153,908 · Granted Mar 5, 2024

System and method for data analytics for communications in walkie-talkie network

Inventors: Ishtiaq Mahmud Rahman (San Francisco, CA); Francis G Lacson (Renton, WA)
Assignee: VoiceBrain, Inc.
H04W4/10G06F3/162G10L15/1815G10L15/22G10L2015/223
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Quick Facts
Patent No.
US 11,924,717
App. No.
17/153,908
Granted
Mar 5, 2024
Kind
B2
Abstract

An embodiment of the invention provides a deskless workstation that comprises a network of walkie-talkies connected to a mobile phone that forwards the audio communications to a remote processing device for further processing and to take appropriate actions. The remote device may analyze the audio information to determine what action to perform. An embodiment of the invention may be assembled largely from existing components such as a particular type of audio cable, an Android mobile phone, and a radio application available for Android phones.

Claims (38)

1. A deskless workstation system, comprising:

a plurality of walkie-talkies forming an audio communication network;

a mobile phone having a radio app;

a cable having a first end connected directly to a walkie-talkie of the plurality of walkie-talkies with one of a TRS connector and a TRRS connector and a second end connected directly to the mobile phone with one of a TRS connector and a TRRS connector, the cable transmitting raw audio data from the audio communication network from the walkie-talkie of the plurality of walkie-talkies to the radio app on mobile phone,

wherein the radio app on the mobile phone transmits received raw audio data to a remote computer for audio processing.

2. The deskless workstation of claim 1 wherein the cable further comprises an analog-digital audio converter interposed between the first end of the cable and the second end of the cable, wherein the analog-digital audio converter converts the raw audio data from raw analog audio data to raw digital audio data received from the walkie-talkie of the plurality of walkie-talkies.

3. The deskless workstation of claim 1 wherein the cable further comprises:

a first cable having a first connector configured to plug into the mobile phone and a second connector configured to connect to another cable, wherein the first connector of the first cable is the one of a TRS connector and a TRRS connector; and

a second cable having a first connector configured to connect to the second connector of the first cable and a second connector configured to connect to the walkie-talkie of the plurality of walkie-talkies, wherein the second connector of the second cable is the one of a TRS connector and a TRRS connector.

4. The deskless workstation of claim 3 wherein the first cable comprises at least one of CTIA or OMTP compatible headphone-mic audio cable.

5. The deskless workstation of claim 3 wherein the second cable comprises a line-to-mic attenuator cable.

6. The deskless workstation of claim 1 , further comprising:

a circular buffer that stores received raw audio data in the mobile phone under the direction of the radio app, such that the circular buffer records over previously stored raw audio data after reaching a predefined memory allocation.

7. The deskless workstation of claim 6 wherein the radio app directs transmission of the received raw audio data to the remote computer for audio processing before the circular buffer reaches the predefined memory allocation.

8. The deskless workstation of claim 1 wherein the radio app directs transmission of the received raw audio data to the remote computer via one of at least a cellular network and the internet.

9. The deskless workstation of claim 8 wherein the remote computer analyzes the received raw audio data to determine semantic content within the received raw audio data, identify actions requested in the semantic content of the received raw audio data, and engage actions to complete the identified actions.

10. The deskless workstation of claim 8 wherein the remote computer analyzes the received raw audio data to create a transcript of words contained in the received raw audio data.

11. The deskless workstation system of claim 1 , wherein the remote computer determines by that an alarm condition has occurred based on analysis of the processed audio data, further comprising:

an alarm that activates upon receipt of the alarm condition from the remote computer.

12. A method for operating a deskless workstation, comprising:

receiving raw audio data in a walkie-talkie of a plurality of walkie-talkies forming an audio communication network;

transferring the raw audio data from the walkie-talkie of the plurality of walkie-talkies to a mobile phone directly over a cable having one of a TRS connector and a TRRS connector connected to the walkie-talkie of the plurality of walkie-talkies and the cable having one of a TRS connector and a TRRS connector connected to the mobile phone;

receiving the raw audio data in a radio app located on the mobile phone from the walkie-talkie of the plurality of walkie-talkies;

transferring the raw audio data from the mobile phone to a remote computer;

processing the received raw audio data in the remote computer to identify commands contained in the processed audio data.

13. The method for operating a deskless workstation of claim 12 , the method further comprising:

translating raw audio data from raw analog audio data to raw digital audio data in an analog-digital converter transposed in the cable between the one of a TRS connector and a TRRS connector connected to the walkie-talkie of the plurality of walkie-talkies and the one of a TRS connector and a TRRS connector connected to the mobile phone.

14. The deskless workstation method of claim 12 , the method further comprising:

storing received raw audio data in a circular buffer in the mobile phone under the direction of the radio app; and

recording over previously stored raw audio data in the circular buffer after reaching a predefined memory allocation.

15. The deskless workstation method of claim 12 , further comprising:

analyzing by the remote computer the processed digital audio data to determine semantic content within the processed audio data and identify requested actions in the semantic content of the processed audio data; and

engage completion of the identified requested actions.

16. The deskless workstation method of claim 12 , further comprising:

analyzing the processed audio data by the remote computer to create a transcript of words contained in the received audio data.

17. The deskless workstation method of claim 12 , further comprising:

determining by the remote computer that an alarm condition has occurred based on analysis of the processed audio data; and

generating an alarm based on the alarm condition.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2024
From: VOICEME.AI, INC.
To: VOICEBRAIN, INC.
Reel/Frame 066801/0836 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: LACSON, FRANCIS G
To: VOICEME.AI, INC.
Reel/Frame 055055/0894 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 21, 2021
From: RAHMAN, ISHTIAQ MAHMUD
To: VOICEME.AI, INC.
Reel/Frame 055055/0940 →
Continuity (2)
Provisional Application 62963814 · Jan 21, 2020
Related Publication 20210227355A1 · Jul 22, 2021