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首页> 外文期刊>Inverse problems and imaging >MICROLOCAL ANALYSIS OF DOPPLER SYNTHETIC APERTURE RADAR
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MICROLOCAL ANALYSIS OF DOPPLER SYNTHETIC APERTURE RADAR

机译:多普勒合成孔径雷达的微血流分析

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We study the existence and suppression of artifacts for a Dopplerbased Synthetic Aperture Radar (DSAR) system. The idealized air- or spaceborne system transmits a continuous wave at a fixed frequency and a co-located receiver measures the resulting scattered waves; a windowed Fourier transform then converts the raw data into a function of two variables: slow time and frequency. Under simplifying assumptions, we analyze the linearized forward scattering map and the feasibility of inverting it via filtered backprojection, using techniques of microlocal analysis which robustly describe how sharp features in the target appear in the data. For DSAR with a straight flight path, there is, as with conventional SAR, a left-right ambiguity artifact in the DSAR image, which can be avoided via beam forming to the left or right. For a circular flight path, the artifact has a more complicated structure, but filtering out echoes coming from straight ahead or behind the transceiver, as well as those outside a critical range, produces an artifact-free image. We show that these results are qualitatively robust; although initially derived under an approximation widely used for range-based SAR, they are either structurally stable or robust with respect to a more accurate model.
机译:我们研究了一种多普利克基合成孔径雷达(DSAR)系统的伪影的存在和抑制。理想化的空气或星载系统以固定频率发射连续波,并且共同定位的接收器测量所得到的散射波;然后窗口傅立叶变换将原始数据转换为两个变量的函数:慢时间和频率。在简化假设下,我们通过滤除的反射分析了线性化前向散射图和反转IT的可行性,使用微载体分析技术稳健地描述了目标中的尖锐特征如何出现在数据中。对于具有直飞路径的DSAR,与传统的SAR一样,DSAR图像中的左右模糊伪像,其可以通过梁或右侧的波束形成来避免。对于圆形飞行路径,工件具有更复杂的结构,但滤除从收发器的直线或后面的回声以及临界范围之外的回声产生无伪图像。我们表明这些结果具有定性鲁棒;尽管最初在广泛用于基于范围的SAR的近似下衍生,但是对于更准确的模型,它们是结构稳定或稳健的。

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