Photonics radar based LSS targets’ postures’ m-D and cadence frequency imaging using empirical wavelet transform technique
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Date
2024
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Publisher
Taylor and Francis Ltd.
Abstract
Developing a photonics radar to detect the combined multiple simultaneous-behaviours/postures of low-slow-small (LSS) aerial targets and appropriately extracting their Doppler profile have become significant to enable air surveillance/security and guidance for unmanned aviation. A CW photonic radar of 5.3 GHz, and an empirical wavelet transform (EWT) based radar signal processing algorithm are developed and their sensing/measurement capabilities are tested with representative LSS target models: two/three blades propeller systems, a warhead-like cone-shaped target and a bionic bird. Open field experiments with different simultaneous-behaviours of these LSS targets are conducted, and performance validation of radar, in terms of micro-Doppler signature extractions, cadence frequency imaging and targets' behavioural parameters measurement, is analysed, quantitatively investigated and the results are presented. All the measurement results keep an average of 99% of agreement with the standard measurement values that evidence the compatibility of developed photonics radar for precision sensing of multiple simultaneous-behaviours/postures of LSS aerial targets. © 2023 The Royal Photographic Society.
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Keywords
Air navigation, Antennas, Network security, Parameter estimation, Photonics, Radar imaging, Radar measurement, Accurate combined m-D imaging, Cadence frequency imaging, Empirical wavelet transform, Low-slow-small target, Parameter measurement, Photonic CW radar, Posture induced m-D signature, Small targets, Target parameter, Target' parameter measurement, Time frequency, Time–frequency imaging, Wavelets transform, Wavelet transforms
Citation
Imaging Science Journal, 2024, 72, 6, pp. 706-722
