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Clutter rejecting waveforms for synthetic aperture radar traversing arbitrary flight path

机译:合成孔径雷达穿越任意飞行路径的杂波抑制波形

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In [28], we presented a synthetic aperture radar (SAR) inversion method in which the backscatter measurements are collected from known but arbitrary flight path and non-flat topography corrupted with clutter and noise. The objective of the current work is to design transmit waveforms and receive filters jointly to perform clutter suppression by adaptive transmit. Our approach starts with the development of a physics based forward model for SAR. Next, we formulate design of clutter rejecting waveforms as a variational problem using the minimum mean square error criteria. The resulting waveforms lead to an adaptive linear least squares transmit scheme in which waveforms vary at every point on the flight path based on the clutter and target spectral density functions.
机译:在[28]中,我们提出了一种合成孔径雷达(SAR)反演方法,其中反向散射测量值是从已知但任意的飞行路径以及因杂波和噪声破坏的非平坦地形中收集的。当前工作的目的是设计发射波形并共同接收滤波器,以通过自适应发射来执行杂波抑制。我们的方法从开发基于物理的SAR正向模型开始。接下来,我们使用最小均方误差标准将杂波抑制波形的设计公式化为一个变分问题。产生的波形导致自适应线性最小二乘发射方案,其中基于杂波和目标频谱密度函数,波形在飞行路径上的每个点处都会发生变化。

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