IP Library Granted Patent US 10,795,010
Granted Patent B2
US 10,795,010 · App. 16/362,285 · Granted Oct 6, 2020

Systems and methods for detecting, tracking and identifying small unmanned systems such as drones

Inventors: Dwaine A. Parker (Naples, FL); Damon E. Stern (Riverview, FL); Lawrence S. Pierce (Huntsville, AL)
Assignee: XiDrone Systems, Inc.
G01S13/06F41H11/02F41H13/0075G01S3/782G01S7/021G01S7/38G01S7/414G01S13/42G01S13/86G01S13/88G01S13/883G01S13/91G01S13/933
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Quick Facts
Patent No.
US 10,795,010
App. No.
16/362,285
Granted
Oct 6, 2020
Kind
B2
Abstract

A system for providing integrated detection and countermeasures against unmanned aerial vehicles include a detecting element, a location determining element and an interdiction element. The detecting element detects an unmanned aerial vehicle in flight in the region of, or approaching, a property, place, event or very important person. The location determining element determines the exact location of the unmanned aerial vehicle. The interdiction element can either direct the unmanned aerial vehicle away from the property, place, event or very important person in a non-destructive manner, or can cause disable the unmanned aerial vehicle in a destructive manner.

Claims (33)

1. A system, comprising:

at least one radio receiver configured to detect a radio frequency (RF) signature based on a radio signal communicated between an aerial target and a remote control device;

at least one radar configured to detect the target; and

at least one computer processor programmed to identify the target based on the detected RF signature and locate the target based on the radar detection, and based on at least one of target identification and/or target location, determine if the target is an unmanned aerial system (UAS).

2. The system recited in claim 1 , further comprising a database of RF signature data that the at least one computer processor accesses to detect the RF signature.

3. The system recited in claim 2 , wherein the RF signature data comprises modulation information, and the database comprises a modulation look-up table.

4. The system recited in claim 1 , wherein determining the UAS comprises one of target of interest or threat if its location is within a predetermined airspace boundary around a protected interest.

5. The system recited in claim 1 , further comprising an alignment assembly configured to employ UAS location information to point at least one of the radar, a laser range finder, a radio receiver antenna, and an electro-optic receiver in the direction of the UAS.

6. The system recited in claim 1 , further comprising an electronic countermeasure (ECM) signal generator configured to transmit an ECM signal to disrupt communications between the UAS and the remote control device.

7. The system recited in claim 6 , wherein the ECM signal generator employs waveform parameters of at least one of an uplink and a downlink radio signal.

8. An apparatus, comprising:

a memory; and at least one processor operatively coupled to the memory, the at least one processor configured to:

detect a radio frequency (RF) signature of at least one of an uplink and a downlink radio signal communicated between an unmanned aerial system (UAS) and a remote control device;

identify the UAS based on the RF signature;

process radar data to locate the UAS; and

based on at least one of UAS identification and location, determine if the target is a UAS.

9. The apparatus recited in claim 8 , further comprising a database of RF signature data that the at least one processor accesses to identify the UAS.

10. The apparatus recited in claim 9 , wherein the RF signature data comprises modulation information, and the database comprises a modulation look-up table.

11. The apparatus recited in claim 8 , wherein determining the UAS comprises one of target of interest or threat if its location is within a predetermined airspace boundary around a protected interest.

12. The apparatus recited in claim 8 , wherein the at least one processor is further configured to control an alignment assembly to point at least one of a radar, a laser range finder, a radio receiver antenna, and an electro-optic receiver in the direction of the UAS.

13. The apparatus recited in claim 8 , wherein the at least one processor is further configured to control an electronic countermeasure (ECM) signal generator that generates an ECM signal for disrupting communications between the UAS and its remote-control device.

14. The apparatus recited in claim 13 , wherein the ECM signal generator employs waveform parameters of at least one of the uplink and the downlink radio signal.

15. A method, comprising:

detecting a radio frequency (RF) signature of at least one of an uplink and a downlink radio signal communicated between an unmanned aerial system (UAS) and a remote control device;

identifying the UAS based on the RF signature;

employing a radar to locate the UAS; and

based on at least one of UAS identification and location, determining if the target is a UAS.

16. The method recited in claim 15 , wherein identifying the UAS comprises accessing a database of RF signature data.

17. The method recited in claim 16 , wherein the RF signature data comprises modulation information, and the database comprises a modulation look-up table.

18. The method recited in claim 15 , wherein determining if the UAS comprises one of target of interest or threat if the UAS's location is within a predetermined airspace boundary around a protected interest.

19. The method recited in claim 15 , further comprising controlling an alignment assembly to point at least one of a radar, a laser range finder, a radio receiver antenna, and an electro-optic receiver in the direction of the UAS.

20. The method recited in claim 15 , further comprising employing an electronic countermeasure (ECM) signal generator to generate an ECM signal for disrupting communications between the UAS and its remote-control device.

21. The method recited in claim 20 , wherein the ECM signal generator employs waveform parameters of at least one of the uplink and the downlink radio signal.

Continuity (5)
Continuation 15967291 · Apr 30, 2018
Continuation 15598112 · May 17, 2017
Continuation 14821907 · Aug 10, 2015
Provisional Application 62094154 · Dec 19, 2014
Related Publication 20190219682A1 · Jul 18, 2019
Cited By (7)
US 12,272,252 US 12,333,947 US 12,417,633 US 12,425,123 US 12,494,064 US 12,513,264 US 12,651,533