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Detection and imaging of the moving target using frequency space- time adaptive processing and Fractional Fourier Transform

机译:使用频率时空自适应处理和分数阶傅里叶变换对运动目标进行检测和成像

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摘要

As for multi-channel SAR, the spectrum of the clutter is spatially-temporally coupled, and the echo of the moving target is chirp signal. A novel method based on STAP and FrFT is proposed in this paper, which is used for moving target detection and parameter estimation. Two steps are used for fast target detection : the coarse detection in low range resolution and parameter estimation for the specific data where the moving target appears. This paper discusses the principle of frequency STAP for clutter suppression firstly, and subsequently infers that the signal after clutter suppression is chirp signal. Then FrFT is introduced to estimate the parameters of the output signal, which can be used to estimate the parameters of the moving target. Finally, the process of the proposed method is introduced. Matching function is constructed to compensate the phase deviation caused by movement and focus the moving target. The effectiveness of the proposed method is validated by the simulation.
机译:对于多通道SAR,杂波的频谱在时间上是空间耦合的,运动目标的回波是线性调频信号。提出了一种基于STAP和FrFT的新方法,用于运动目标的检测和参数估计。快速目标检测使用两个步骤:低范围分辨率的粗略检测和运动目标出现的特定数据的参数估计。本文首先讨论了频率STAP抑制杂波的原理,然后推断出杂波抑制后的信号是线性调频信号。然后引入FrFT估计输出信号的参数,该参数可用于估计运动目标的参数。最后,介绍了提出的方法的过程。构造匹配功能以补偿由于运动引起的相位偏差并聚焦运动目标。仿真结果验证了所提方法的有效性。

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