4.7 Article

Micro-Doppler Parameters Extraction of Precession Cone-Shaped Targets Based on Rotating Antenna

Journal

REMOTE SENSING
Volume 14, Issue 11, Pages -

Publisher

MDPI
DOI: 10.3390/rs14112549

Keywords

rotating antenna; micro-Doppler; precession cone-shaped target; parameters extraction; EMD

Funding

  1. National Nature Science Foundation of China [61971434, 62131020]

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This paper proposes a method for micro-Doppler parameter extraction of cone-shaped targets based on a rotating antenna, effectively analyzing the micro-motions of cone-shaped targets. Simulation results demonstrate the effectiveness and robustness of the proposed method.
Micro-Doppler is regarded as a unique signature of a target with micro-motions. The sophisticated recognition of the cone-shaped targets can be realized through the micro-Doppler effect. However, it is difficult to extract the micro-motion features perpendicular to the radar line of sight (LOS) effectively. In this paper, a micro-Doppler parameters extraction method of the cone-shaped targets is put forward based on the rotating antenna. First, a new radar configuration is proposed, in which an antenna rotates uniformly on a fixed circle, thus producing Doppler frequency shift. Second, the expression of the micro-Doppler frequency shift induced by the precession cone-shaped target is derived. Then, the micro-Doppler curves of point scatterers at the cone top and bottom are separated by the smoothness of the curves, and the empirical mode decomposition (EMD) method is utilized for the detection and estimation of the coning frequency. Finally, the micro-motion components perpendicular to the radar LOS are inverted by the peak of micro-Doppler frequency curve. Simulation results prove the effectiveness and robustness of the proposed method.

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