首页> 外文会议>2011 IEEE International Geoscience Remote Sensing Symposium >Radar micro-Doppler analysis and rotation parameter estimation for rigid targets with complicated micro-motions
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Radar micro-Doppler analysis and rotation parameter estimation for rigid targets with complicated micro-motions

机译:复杂微运动刚性目标的雷达微多普勒分析和旋转参数估计

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Radar micro-Doppler (mD) provides a promising approach to parameter estimation and classification of micro-dynamic targets. The micro-motion states and characteristics of instantaneous mD frequency are investigated to free symmetric rigid bodies. They are found to take the precession motion, and thus induce complicated mD features with non-sinusoidal variation. Based on theoretical analysis of the spectral structure of mD time-frequency (TF) sequence, this paper proposes a rotation parameter estimation method for complicated micro-motions. The estimation method includes TF analysis, spectrogram processing, projection mapping and spectral estimation. The spin and precession rates of micro-dynamic targets can then be extracted from their radar echoes. Finally, the effectiveness of the proposed method is verified by Monte-Carlo simulations and further discussion.
机译:雷达微多普勒(mD)为微动态目标的参数估计和分类提供了一种有前途的方法。研究了自由对称刚体的微运动状态和瞬时mD频率特性。发现它们采取进动运动,并因此导致具有非正弦变化的复杂mD特征。在对mD时频序列频谱结构进行理论分析的基础上,提出了一种针对复杂微运动的旋转参数估计方法。估计方法包括TF分析,频谱图处理,投影映射和频谱估计。然后可以从它们的雷达回波中提取出微动力目标的自旋和进动速率。最后,通过蒙特卡洛仿真和进一步的讨论验证了该方法的有效性。

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