IP Library Granted Patent US 12,518,645
Granted Patent B2
US 12,518,645 · App. 17/549,493 · Granted Jan 6, 2026

Mobile surveillance systems and methods for UAS operational support

Inventor: Sean Keating (Elkridge, MD)
Assignee: Teledyne FLIR Defense, Inc.
G08G5/56G08G5/25G08G5/34G08G5/80H04N7/185H04N23/695
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Quick Facts
Patent No.
US 12,518,645
App. No.
17/549,493
Granted
Jan 6, 2026
Kind
B2
Abstract

Mobile surveillance systems (MSSs) and related techniques are provided to improve the safety and operational flexibility of unmanned aircraft systems (UASs) and unmanned aerial vehicles (UAVs). An MMS includes an extendable mast and a modular sensor cluster couplable to the extendable mast. The MSS may also include a logic device configured to determine relative and/or absolute positions of UAVs within a selected airspace monitoring volume based, at least in part, on ranging sensor data provided by the modular sensor cluster, and to generate an airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the UAVs and/or the selected airspace monitoring volume.

Claims (102)

1 . A mobile surveillance system (MSS) for an unmanned aircraft system (UAS) comprising one or more unmanned aerial vehicles (UAVs), the MSS comprising:

an extendable mast configured to be secured to a mobile terrestrial platform and provide an elevated modular sensor mount;

a modular sensor cluster configured to couple to the modular sensor mount of the extendable mast and provide ranging sensor data corresponding to a selected airspace monitoring volume of the MSS; and

a logic device configured to communicate with the extendable mast and the modular sensor cluster, wherein the logic device is configured to:

determine relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume based, at least in part, on the ranging sensor data provided by the modular sensor cluster; and

generate an airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs and/or the selected airspace monitoring volume;

wherein:

the MSS is configured to generate deconflicting alarms based at least in part on the relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume as determined by the logic device;

the MSS is configured, upon generating a deconflicting alarm, to communicate and deconflict the selected airspace monitoring volume with a pilot of at least one of the one or more UAVs pertinent to the alarm;

the modular sensor cluster comprises an actuated three-dimensional radar assembly configured to monitor and provide at least a portion of the ranging sensor data corresponding to approximately a quadrant of a hemispherical monitoring airspace volume centered at the elevated modular sensor mount; and

the logic device is configured to:

receive user input identifying the selected airspace monitoring volume of the MSS; and

elevate the extendable mast to provide the elevated modular sensor mount and/or orient the three-dimensional radar assembly according to the received user input to monitor the selected airspace monitoring volume of the MSS.

2 . A mobile surveillance system (MSS) for an unmanned aircraft system (UAS) comprising one or more unmanned aerial vehicles (UAVs), the MSS comprising:

an extendable mast configured to be secured to a mobile terrestrial platform and provide an elevated modular sensor mount;

a modular sensor cluster configured to couple to the modular sensor mount of the extendable mast and provide ranging sensor data corresponding to a selected airspace monitoring volume of the MSS; and

a logic device configured to communicate with the extendable mast and the modular sensor cluster, wherein the logic device is configured to:

determine relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume based, at least in part, on the ranging sensor data provided by the modular sensor cluster; and

generate an airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs and/or the selected airspace monitoring volume;

wherein the MSS is configured to generate deconflicting alarms based at least in part on the relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume as determined by the logic device;

wherein:

the MSS is configured to:

receive, from at least one UAV of the one or more UAVs, the at least one UAV's position;

use the at least one UAV's position to continuously slew a 3D radar of the MSS and an imaging system of the MSS along a track of the at least one UAV, creating a surrounding area of situational awareness; and

use an alarm zone configured within the MSS to issue a notification when an intrusion is detected within the at least one UAV's flight zone;

the modular sensor cluster comprises a communications module configured to receive transponder data from the one or more UAVs and/or unaffiliated aircraft at least within the selected airspace monitoring volume; and

the airspace deconfliction display view is based, at least in part, on the received transponder data.

3 . The MSS of claim 2 , wherein at least one of the following is true:

the MSS is configured, upon generating a deconflicting alarm, to communicate and deconflict the selected airspace monitoring volume with a pilot of at least one of the one or more UAVs pertinent to the alarm; and/or

the MSS is configured, upon generating a deconflicting alarm, to communicate with each control station controlling at least one of one or more UAVs pertinent to the deconflicting alarm.

4 . The MSS of claim 3 , wherein:

the MSS is configured, upon generating a deconflicting alarm, to communicate with each control station controlling at least one of the one or more UAVs pertinent to the deconflicting alarm; and

the modular sensor cluster comprises an actuated three-dimensional radar assembly configured to monitor and provide at least a portion of the ranging sensor data corresponding to at least a quadrant of a hemispherical monitoring airspace volume centered at the elevated modular sensor mount; and

the logic device is configured to:

orient the three-dimensional radar assembly to encompass the determined relative and/or absolute positions of a selected one of the one or more UAVs within the selected airspace monitoring volume.

5 . The MSS of claim 3 , wherein the logic device is configured to:

determine relative and/or absolute positions of unaffiliated aircraft at least within the selected airspace monitoring volume based, at least in part, on the ranging sensor data provided by the modular sensor cluster; and

generate the airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the unaffiliated aircraft.

6 . The MSS of claim 3 , wherein the generating the airspace deconfliction display view comprises:

determining one or more deconfliction trajectories for the respective one or more UAVs within the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs; and

generating one or more trajectory directive indicators corresponding to the one or more deconfliction trajectories for rendering within the generated airspace deconfliction display view.

7 . The MSS of claim 3 , wherein the generating the airspace deconfliction display view comprises:

determining one or more deconfliction trajectories for the respective one or more UAVs within the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs; and

transmitting one or more trajectory directive control signals corresponding to the one or more deconfliction trajectories to the respective one or more UAVs and/or associated base stations.

8 . The MSS of claim 3 , wherein the logic device is configured to:

transmit the airspace deconfliction display view, image data received from the one or more UAVs, and/or the relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume via the communications module to a remote aggregation server.

9 . The MSS of claim 4 , wherein the logic device is configured to:

receive image data from the one or more UAVs; and

generate the airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the received image data from the one or more UAVs.

10 . The MSS of claim 2 , wherein:

the MSS is configured to be directly connected to a base station;

the modular sensor cluster comprises an actuated imaging system configured to provide at least a portion of the ranging sensor data as image data;

the logic device is configured to orient the actuated imaging system to image the determined relative and/or absolute positions of a selected one of the one or more UAVs and/or unaffiliated aircraft within the selected airspace monitoring volume; and

the airspace deconfliction display view is based, at least in part, on the image data provided by the actuated imaging system.

11 . The method of claim 2 , wherein the method comprises, upon generating a deconflicting alarm, communicating by the MSS with each control station controlling at least one of one or more UAVs pertinent to the deconflicting alarm;

wherein:

the modular sensor cluster comprises an actuated three-dimensional radar assembly configured to monitor and provide at least a portion of the ranging sensor data corresponding to at least a quadrant of a hemispherical monitoring airspace volume centered at the elevated modular sensor mount; and

the method comprises:

orienting the three-dimensional radar assembly to encompass the determined relative and/or absolute positions of a selected one of the one or more UAVs within the selected airspace monitoring volume.

12 . The method of claim 2 , further comprising, upon generating a deconflicting alarm, communicating by the MSS with a base station which is directly connected to the MSS; and

wherein:

the modular sensor cluster comprises an actuated imaging system configured to provide at least a portion of the ranging sensor data as image data;

the method comprises orienting the actuated imaging system to image the determined relative and/or absolute positions of a selected one of the one or more UAVs and/or unaffiliated aircraft within the selected airspace monitoring volume; and

the airspace deconfliction display view is based, at least in part, on the image data provided by the actuated imaging system.

13 . The method of claim 2 , further comprising:

determining relative and/or absolute positions of unaffiliated aircraft at least within the selected airspace monitoring volume based, at least in part, on the ranging sensor data provided by the modular sensor cluster; and

generating the airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the unaffiliated aircraft.

14 . The method of claim 2 , wherein the generating the airspace deconfliction display view comprises:

determining one or more deconfliction trajectories for the respective one or more UAVs within the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs; and

generating one or more trajectory directive indicators corresponding to the one or more deconfliction trajectories for rendering within the generated airspace deconfliction display view.

15 . The method of claim 2 , wherein the generating the airspace deconfliction display view comprises:

determining one or more deconfliction trajectories for the respective one or more UAVs within the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs; and

transmitting one or more trajectory directive control signals corresponding to the one or more deconfliction trajectories to the respective one or more UAVs and/or associated base stations.

16 . The method of claim 2 , further comprising:

transmitting the airspace deconfliction display view, image data received from the one or more UAVs, and/or the relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume to a remote aggregation server.

17 . The method of claim 2 , further comprising:

receiving image data from the one or more UAVs; and

generating the airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the received image data from the one or more UAVs.

18 . A method comprising:

determining relative and/or absolute positions of one or more unmanned aerial vehicles (UAVs) within a selected airspace monitoring volume based, at least in part, on ranging sensor data provided by a modular sensor cluster of a mobile surveillance system (MSS) for an unmanned aircraft system (UAS) comprising the one or more UAVs; and

generating an airspace deconfliction display view corresponding to the selected airspace monitoring volume based, at least in part, on the determined relative and/or absolute positions of the one or more UAVs and/or the selected airspace monitoring volume, wherein:

the modular sensor cluster is coupled to a modular sensor mount provided by an extendable mast of the MSS; and

the extendable mast is secured to a mobile terrestrial platform; and

generating deconflicting alarms by the MSS based at least in part on the relative and/or absolute positions of the one or more UAVs within the selected airspace monitoring volume as determined by the logic device;

upon generating a deconflicting alarm, performing by the MSS at least one of:

communicating and deconflicting the selected airspace monitoring volume with a pilot of at least one of the one or more UAVs pertinent to the alarm; and/or

communicating by the MSS with each control station controlling at least one of the one or more UAVs pertinent to the deconflicting alarm;

using the MSS to:

receive, from at least one UAV of the one or more UAVs, the at least one UAV's position;

use the at least one UAV's position to continuously slew a 3D radar of the MSS and an imaging system of the MSS along a track of the at least one UAV, creating a surrounding area of situational awareness; and

use an alarm zone configured within the MSS to issue a notification when an intrusion is detected within the at least one UAV's flight zone;

wherein:

the modular sensor cluster comprises a communications module configured to receive transponder data from the one or more UAVs and/or unaffiliated aircraft at least within the selected airspace monitoring volume; and

the airspace deconfliction display view is based, at least in part, on the received transponder data.

19 . The method of claim 18 , wherein the method further comprises, upon generating a deconflicting alarm,

communicating by the MSS with each control station controlling at least one of the one or more UAVs pertinent to the deconflicting alarm.

20 . The method of claim 19 , wherein the method comprises, upon generating a deconflicting alarm, communicating and deconflicting the selected airspace monitoring volume with a pilot of at least one of the one or more UAVs pertinent to the alarm; and

wherein:

the modular sensor cluster comprises an actuated three-dimensional radar assembly configured to monitor and provide at least a portion of the ranging sensor data corresponding to approximately a quadrant of a hemispherical monitoring airspace volume centered at the elevated modular sensor mount; and

the method comprises:

receiving user input identifying the selected airspace monitoring volume of the MSS; and

elevating the extendable mast to provide the elevated modular sensor mount and/or orienting the three-dimensional radar assembly according to the received user input to monitor the selected airspace monitoring volume of the MSS.

Assignments (4)
CHANGE OF NAME Recorded Aug 7, 2024
From: TELEDYNE FLIR DETECTION, INC.
To: TELEDYNE FLIR DEFENSE, INC.
Reel/Frame 068338/0679 →
CHANGE OF NAME Recorded Jul 19, 2024
From: TELEDYNE FLIR DETECTION, INC.
To: TELEDYNE FLIR DEFENSE, INC.
Reel/Frame 068463/0776 →
CHANGE OF NAME Recorded Aug 15, 2023
From: FLIR DETECTION, INC.
To: TELEDYNE FLIR DETECTION, INC.
Reel/Frame 064602/0148 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 13, 2021
From: KEATING, SEAN
To: FLIR DETECTION, INC.
Reel/Frame 058376/0357 →
Continuity (2)
Provisional Application 63125390 · Dec 14, 2020
Related Publication 20220189319A1 · Jun 16, 2022
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