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首页> 外文期刊>Radar, Sonar & Navigation, IET >Separation and reconstruction of the rigid body and micro-Doppler signal in ISAR part I – theory
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Separation and reconstruction of the rigid body and micro-Doppler signal in ISAR part I – theory

机译:ISAR第一部分I理论中的刚体和微多普勒信号的分离与重建

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In radar imaging, the micro-Doppler effect is caused by fast movements of some scattering points on the target. These movements correspond to highly non-stationary components in the time-frequency domain of the signal. The rigid body can be considered as stationary at one range location during the processing time. This property is used to separate the micro-Doppler signal from the rigid body using the L-statistics. Since the rigid body can be considered as a sparse signal, its values can be fully recovered at the positions where the micro-Doppler and rigid body components overlap. The recovery is based on the compressive sensing theory and methods. After an overview of the methods, a quantitative analysis of the improvements achieved in the time-frequency-based separation is done. Moreover, a comparison with both the time and the frequency domain analysis is provided. Analysis of small additive noise influence to the reconstruction accuracy is done.
机译:在雷达成像中,微多普勒效应是由目标上某些散射点的快速移动引起的。这些运动对应于信号的时频域中的高度非平稳分量。在处理期间,可以将刚体视为固定在一个范围内的位置。此属性用于使用L统计量将微多普勒信号与刚体分开。由于可以将刚体视为稀疏信号,因此可以在微多普勒分量和刚体分量重叠的位置上完全恢复其值。恢复基于压缩感测理论和方法。在对这些方法进行了概述之后,对基于时频的分离所实现的改进进行了定量分析。此外,还提供了时域和频域分析的比较。分析了较小的附加噪声对重构精度的影响。

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