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Micromotion Parameter Estimation of Free Rigid Targets Based on Radar Micro-Doppler

机译:基于雷达微多普勒的自由刚性目标微运动参数估计

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摘要

In this paper, an estimation method of micromotion parameters for free rigid targets using micro-Doppler (mD) features is investigated. These parameters include spin rate, precession rate, nutation angle, and inertia ratio. They represent the microdynamic characteristics and intrinsic properties of targets. The time variation of mD frequency is found complicated yet valuable to estimate the micromotion parameters. From the viewpoint of the spectra of mixed mD time–frequency (TF) data sequences, the theoretical analysis and mathematical derivation are conducted in detail according to the scatterer distribution of rigid bodies. We then present an approach to realize the micromotion parameter estimation from radar mD echoes. It mainly consists of TF transform, TF image processing, mixed mD TF data sequence formation, and spectral estimation. Simulation experiments and result discussion are carried out to demonstrate the effectiveness of the proposed estimation method.
机译:本文研究了一种利用微多普勒(mD)特征估计自由刚性目标微运动参数的方法。这些参数包括旋转速度,进动速度,章动角和惯性比。它们代表了靶的微观动力学特征和内在特性。发现mD频率的时间变化很复杂,但对估算微运动参数很有价值。从混合mD时频(TF)数据序列的光谱角度出发,根据刚体的散射体分布详细进行了理论分析和数学推导。然后,我们提出了一种从雷达mD回波实现微动参数估计的方法。它主要包括TF变换,TF图像处理,混合mD TF数据序列形成和频谱估计。仿真实验和结果讨论进行了验证,证明了所提方法的有效性。

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