IP Library Patent Application 16046721
Patent Application
App. No. 16/046,721

VEHICLE-BASED DEPLOYMENT OF A TETHERED SURVEILLANCE DRONE

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Quick Facts
Patent No.
US None
App. No.
16/046,721
Abstract

In one embodiment, the disclosure provides an unmanned aerial system including a base station, an unmanned aerial vehicle (“UAV”), and a tether extending between the base station and the UAV. The base station includes a base housing coupled to a vehicle, a power source, a controller, and a first coupling mechanism coupled to the base housing. The UAV includes a UAV housing, a propulsion system coupled to the UAV housing, a second coupling mechanism, and at least one camera coupled to the UAV housing. The tether extends between the first coupling mechanism and the second coupling mechanism, and is configured to transmit power to the UAV, as well as transmit data signals between the base station controller and the UAV.

Claims (54)

1 . An unmanned aerial system, comprising:

a base station including

a base housing coupled to a vehicle,

a power source, and

a first coupling mechanism coupled to the base housing;

an unmanned aerial vehicle (“UAV”) including:

a UAV housing,

a propulsion system coupled to the UAV housing, the propulsion system configured to provide sustained flight of the UAV,

a second coupling mechanism coupled to the UAV housing, and

at least one camera coupled to the UAV housing;

a tether extending between the first coupling mechanism and the second coupling mechanism, the tether configured to:

transmit power to the UAV, and

transmit data signals between the base station and the UAV; and

a controller communicably coupled to the tether, the controller configured to control the propulsion system of the UAV.

2 . The unmanned aerial system of claim 1 , wherein the tether is configured to retractable storage within the base housing.

3 . The unmanned aerial system of claim 1 , wherein the first coupling mechanism further comprises a tensioning device including an electric motor, a friction brake, or both.

4 . The unmanned aerial system of claim 1 , further comprising at least one sensor configured to detect a relative orientation between the base station and the UAV, wherein the controller is configured to control the propulsion system based, at least in part on the relative orientation.

5 . The unmanned aerial system of claim 1 , wherein the controller is configured to store image data from the at least one camera in a memory of the controller, and wherein the controller is configured to automatically transmit a portion of the image data via a transceiver in response to detecting a predetermined wireless signal from a secure synchronization point.

6 . The unmanned aerial system of claim 1 , wherein the UAV further includes one or more LEDs configured to indicate one or more states of the unmanned aerial system.

7 . The unmanned aerial system of claim 1 , wherein the power source is electrically coupled to an electrical system of the vehicle.

8 . The unmanned aerial system of claim 1 , wherein the power source comprises a battery retained within the base housing.

9 . The unmanned aerial system of claim 1 , further comprising a tracking device in wireless communication with the controller, wherein the controller is configured to control one or more of the propulsion system or the at least one camera based at least in part on the location of the tracking device.

10 . The unmanned aerial system of claim 1 , wherein the base housing is configured to securely retain the UAV.

11 . A surveillance system, comprising:

a vehicle mounted surveillance platform including

a base housing coupled to a vehicle, and

a retractable tether configured to transmit and receive data signals;

a remote sensor platform including

an unmanned aerial vehicle (“UAV”) housing configured to couple to an end of the retractable tether,

a propulsion system configured to receive electrical power and data signals from the base station via the retractable tether and provide sustained flight of the remote sensor platform, and

an Input/Output (“I/O”) interface coupled to the UAV housing, the I/O interface including at least one camera configured to transmit image data to the controller via the retractable tether; and

a controller, communicably coupled with the propulsion system and the I/O interface, the controller configured to control the propulsion system of the remote sensor platform.

12 . The surveillance system of claim 11 , wherein the surveillance platform further includes a tensioning device coupled to the retractable tether.

13 . The surveillance system of claim 11 , wherein the I/O interface includes a plurality of cameras disposed circumferentially about a bottom side of the UAV housing.

14 . The surveillance system of claim 11 , wherein the end of the retractable tether is axially aligned with a center of mass of the remote sensor platform.

15 . The surveillance system of claim 11 ,

wherein the I/O interface further includes one or more of an ultrasonic sensor, a temperature sensor, an airspeed sensor, a barometric sensor, and an orientation sensor, and

wherein the controller is configured to control the propulsion system based, at least in part, on data signals received from the I/O interface.

16 . The surveillance system of claim 11 , wherein the controller is configured to store sensor data from the I/O interface in a memory of the controller, and wherein the controller is configured to automatically transmit a portion of the sensor data via a transceiver in response to detecting a predetermined wireless signal from a secure synchronization point.

17 . The surveillance system of claim 11 , wherein the remote sensor platform further includes one or more LEDs configured to indicate one or more states of the unmanned aerial system.

18 . The surveillance system of claim 20 , wherein the controller is configured to control the propulsion system based, at least in part, on an operating state of the vehicle.

19 . The surveillance system of claim 12 , further comprising

a tracking device, wherein the controller is configured to control at least one of the propulsion system or the at least one camera based, at least on part, on a detected location of the tracking device.

20 . An unmanned aerial system, comprising:

an unmanned aerial vehicle (“UAV”) including

an electrical interface,

a propulsion system coupled to the electrical interface, and

a sensor array including at least one camera and an orientation sensor the sensor array coupled to the electrical interface;

a base station including

a base housing coupled to a vehicle, and

an extensible tether coupled to the electrical interface, the extensible tether configured to transmit power to the UAV and transmit data signals between the UAV and the base station; and

a controller coupled to the propulsion system and the sensor array, the controller including at least one processor, a transceiver, and a non-transitory, computer-readable memory storing program instructions configured to be executed by the at least one processor to implement:

flight control of the UAV, and

sensor control of the sensor array.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2020
From: RSQ-SYSTEMS SPRL
To: RSQ-SYSTEMS US LLC
Reel/Frame 053576/0114 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 22, 2019
From: BLAVIER, MIKE; BUYSE, MATHIEU; COULON, JEAN MARC
To: RSQ-SYSTEMS SPRL
Reel/Frame 048679/0005 →