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Target Classification by mmWave FMCW Radars Using Machine Learning on Range-Angle Images

Siddharth Gupta, Prabhat Kumar, Abhinav Kumar, Phaneendra K. Yalavarthy, Linga Reddy Cenkeramaddi

2021IEEE Sensors Journal76 citationsDOI

Abstract

In this paper, we present a novel multiclass-target classification method for mmWave frequency modulated continuous wave (FMCW) radar operating in the frequency range of 77 - 81 GHz, based on custom range-angle heatmaps and machine learning tools. The elevation field of view (FoV) is increased by orienting the Radar antennas in elevation. In this orientation, the radar focuses the beam in elevation to improve the elevation FoV. The azimuth FoV is improved by mechanically rotating the Radar horizontally, which has antenna elements oriented in the elevation direction. The data from the Radar measurements obtained by mechanical rotation of the Radar in Azimuth are used to generate a range-angle heatmap. The measurements are taken in a variety of real-world scenarios with various objects such as humans, a car, and an unmanned aerial vehicle (UAV), also known as a drone. The proposed technique achieves accuracy of 97.6 % and 99.6 % for classifying the UAV and humans, respectively, and accuracy of 98.1 % for classifying the car from the range-angle FoV heatmap. Such a Radar classification technique will be extremely useful for a wide range of applications in cost-effective and dependable autonomous systems, including ground station traffic monitoring and surveillance, as well as control systems for both on-ground and aerial vehicles.

Topics & Concepts

AzimuthElevation (ballistics)RadarRemote sensingComputer scienceContinuous-wave radarElevation angleRadar imagingRadar engineering details3D radarOrientation (vector space)Radar trackerArtificial intelligenceRange (aeronautics)Computer visionGeologyEngineeringTelecommunicationsOpticsPhysicsAerospace engineeringMathematicsGeometryStructural engineeringAdvanced SAR Imaging TechniquesGeophysical Methods and ApplicationsRadar Systems and Signal Processing
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