IP Library Granted Patent US 12,106,674
Granted Patent B1
US 12,106,674 · App. 18/101,429 · Granted Oct 1, 2024

Terrestrial acoustic sensor array

Inventors: Jay B. Cleckler (Long Beach, CA); Jesse L. Klang (Colorado Springs, CO); Sheida Danesh (Westminister, CA); Mark E. Walker (Fullerton, CA); James A. Wes (Diamond Bar, CA); Robert Francis Dircks (Westminster, CA)
Assignee: SCIENTIFIC APPLICATIONS & RESEARCH ASSOCIATES, INC.
G08G5/04B64C39/02G01S19/01G01V1/001G01W1/00G05D1/101H04R1/406H04R3/005B64U2201/104H04R2499/13
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Quick Facts
Patent No.
US 12,106,674
App. No.
18/101,429
Granted
Oct 1, 2024
Kind
B1
Abstract

A terrestrial acoustic sensor array for detecting and preventing airspace collision with an unmanned aerial vehicle (UAV) includes a plurality of ground-based acoustic sensor installations, each of the acoustic sensor installations including a sub-array of microphones. The terrestrial acoustic sensor array may further include a processor for detecting an aircraft based on sensor data collected from the microphones of at least one of the plurality of acoustic sensor installations and a network link for transmitting a signal based on the detection of the aircraft to a control system of the UAV.

Claims (33)

1. A terrestrial acoustic sensor system for detecting and preventing airspace collision with an unmanned aerial vehicle (UAV), the terrestrial acoustic sensor system comprising:

one or more ground-based acoustic sensor installations, each of the one or more acoustic sensor installations including a sub-array of microphones, at least one of the one or more acoustic sensor installations including one or more weather station instruments selected from the group consisting of a thermometer, a barometer, a wind vane, a wind sock, an anemometer, a hygrometer, a pyranometer, a rain gauge, and a precipitation sensor;

one or more processors for detecting an aircraft based on sensor data collected from the microphones of at least one of the one or more acoustic sensor installations; and

a network link for transmitting a signal to a control system of the UAV based on the detection of the aircraft and further based on a measurement of the one or more weather station instruments.

2. The terrestrial acoustic sensor system of claim 1 , wherein the one or more processors is configured to determine a current or predicted environmental condition from the measurement of the one or more weather station instruments, and the transmitted signal is based on the current or predicted environmental condition.

3. The terrestrial acoustic sensor system of claim 1 , wherein the transmitted signal comprises a recommendation that the UAV not complete a maneuver.

4. The terrestrial acoustic sensor system of claim 1 , wherein the transmitted signal comprises a wind advisory.

5. The terrestrial acoustic sensor system of claim 1 , wherein the transmitted signal comprises a recommendation that the UAV suspend flight.

6. The terrestrial acoustic sensor system of claim 1 , wherein the network link is disposed in a master node of the terrestrial acoustic sensor array that is communicatively coupled to the one or more acoustic sensor installations by a wireless network.

7. The terrestrial acoustic sensor system of claim 6 , wherein the master node comprises a cloud computing environment.

8. The terrestrial acoustic sensor system of claim 1 , wherein

the sub-array of microphones of each of the one or more acoustic sensor installations is arranged to distinguish azimuth and elevation of received sounds, and

the sensor data includes azimuth and elevation data collected from the microphones of the at least one of the one or more acoustic sensor installations.

9. The terrestrial acoustic sensor system of claim 1 , wherein the sensor data includes frequency and amplitude data collected from the microphones of the at least one of the one or more acoustic sensor installations.

10. The terrestrial acoustic sensor array of claim 1 , wherein each of the one or more acoustic sensor installations includes a tower structure for disposing the sub-array of microphones at an elevated height.

11. The terrestrial acoustic sensor array of claim 1 , wherein each of the one or more acoustic sensor installations includes a body for mounting the sub-array of microphones to a building or terrain feature.

12. The terrestrial acoustic sensor array of claim 1 , wherein the control system of the UAV comprises a human-operated pilot console that generates a human-interpretable warning in response to receipt of the transmitted signal.

13. The terrestrial acoustic sensor array of claim 1 , wherein the control system of the UAV comprises a flight controller included in the UAV that controls a position of the UAV in response to receipt of the transmitted signal.

14. The terrestrial acoustic sensor array of claim 13 , wherein the flight controller initiates an evasive maneuver of the UAV or reroutes the UAV in response to receipt of the transmitted signal.

15. The terrestrial acoustic sensor array of claim 14 , wherein the flight controller reroutes the UAV to an airspace that is non-navigable by manned aircraft in response to receipt of the transmitted signal.

16. The terrestrial acoustic sensor array of claim 1 , wherein the UAV is controlled from a cloud computing environment.

17. A system comprising:

the terrestrial acoustic sensor array of claim 1 ; and

the UAV.

18. The system of claim 17 , wherein

the UAV includes a global positioning system (GPS) receiver, and

the transmitted signal is further based on GPS data collected from the GPS receiver of the UAV.

19. A non-transitory program storage medium on which are stored instructions executable by a processor or programmable circuit to perform operations for detecting and preventing airspace collision with an unmanned aerial vehicle (UAV), the operations comprising:

detecting an aircraft based on sensor data collected from microphones of at least one of one or more ground-based acoustic sensor installations; and

transmitting a signal to a control system of the UAV based on the detection of the aircraft and further based on a measurement of one or more weather station instruments included in at least one of the one or more ground-based acoustic sensor installations, the one or more weather station instruments being selected from the group consisting of a thermometer, a barometer, a wind vane, a wind sock, an anemometer, a hygrometer, a pyranometer, a rain gauge, and a precipitation sensor.

20. A method of detecting and preventing airspace collision with an unmanned aerial vehicle (UAV), the method comprising:

detecting an aircraft based on sensor data collected from microphones of at least one of one or more ground-based acoustic sensor installations; and

transmitting a signal to a control system of the UAV based on the detection of the aircraft and further based on a measurement of one or more weather station instruments included in at least one of the one or more ground-based acoustic sensor installations, the one or more weather station instruments being selected from the group consisting of a thermometer, a barometer, a wind vane, a wind sock, an anemometer, a hygrometer, a pyranometer, a rain gauge, and a precipitation sensor.

Assignments (2)
SECURITY INTEREST Recorded Oct 15, 2024
From: SCIENTIFIC APPLICATIONS & RESEARCH ASSOCIATES, INC.
To: PACIFIC PREMIER BANK
Reel/Frame 068906/0089 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2023
From: DIRCKS, ROBERT FRANCIS; DANESH, SHEIDA; WES, JAMES A.; CLECKLER, JAY B.; WALKER, MARK E.; KLANG, JESSE L.
To: SCIENTIFIC APPLICATIONS & RESEARCH ASSOCIATES, INC.
Reel/Frame 062487/0057 →
Continuity (2)
Continuation 16570950 · Sep 13, 2019
Provisional Application 62778713 · Dec 12, 2018