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JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Page 1: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

JAGERJammer Acquisition with GPS Exploration and Reconnaissance

1

Adrien Perkins

Stanford University

Page 2: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

UAV bases system to help improve safety of nextgen airspace Autonomous rapid localization of GPS jammer

GPS denied navigation capabilities

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Overview

Page 3: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Path Planning

Partially observable Markov decision process (POMDP)

Grid-based, offline solution to a probabilistic model of sensor and vehicle motion

Based on real-time signal measurements and current belief of sensor location, take action that localizes the jammer in the shortest amount of time

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Our Solution

Page 4: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Our Solution

GPS Denied Navigation

Hardened GPS

• RFI resistance

• Multi-frequency

• Multi-constellation

Signals of Opportunity

• Wifi

• Cell network

• Digital TV

Vision Systems

• Stereo vision

• Monocular vision

• Infrared

Page 5: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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System Diagram

Page 6: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Requirements 20 minute flight 4 kg payload

DJI S1000 “Spreading Wings” Octocopter Frame weight: 4.2 kg Max takeoff weight: 11.0 kg Features

› Carbon fiber frame

› Retractable landing gear

Flight Batteries 2x 8800mAh 6S 30C Lipo 1.22 kg each

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The Vehicle

Page 7: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Electromagnetic Interference

Page 8: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Single directional antenna 9 dBi gain

60-degree beamwidth

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Mobile Sensor

Page 9: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Bearing calculation methods Max

Cross Correlation (CC)

-3dB Point (Max3)

Bearing Calculation

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Page 10: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Measurement Classification

Close < 0.58*h

Ideal

Far > 200m

Page 11: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Far

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Gain Patterns

250m 300m

Page 12: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Close

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Gain Patterns

7m

Page 13: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Ideal

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Gain Patterns

26.6m

Page 14: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Error Distribution Overall and ideal Gaussian

Near is noise

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Bearing Method Performance

Std Dev (°) Max CC Max3

Overall 26.2 27.9 21.9

Ideal 16.3 13.7 13.2

Close 46.0 44.2 37.7

Page 15: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Bearing Method Performance

Page 16: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Patterns aren’t perfect Imperfections problematic for Max

Max3 “smoothing”

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Bearing Method Performance

True Bearing 91.7°

Max 116°

CC 93°

Max3 93°

Page 17: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

88 different gain patterns produced

Range from Signal Strength

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> -65 > -70 > -75 > -80 < -80

RSSI Value (dBm)

Page 18: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Experiment Overview

Joint Interagency Field Experimentation (JIFX)Camp Roberts, CA

WiFi as GPS proxy

Directional antenna for bearing

Page 19: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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Experiment Overview

Pilot

GS

Operator

Safety

OfficerObservations

Page 20: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Greedy Approach

Page 21: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

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POMDP Approach

Page 22: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Sensing Rotation based sensing Characterized performance Accurately determine bearing

Developed path planning POMDP promising performance Developing new filters

Future work GPS jammer localization SLAM implementation Alternate antenna configurations

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Conclusion

Page 23: JAGER - Stanford University · JAGER Jammer Acquisition with GPS Exploration and Reconnaissance 1 Adrien Perkins Stanford University

Thank youQuestions?

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