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Optimum Signal Processing for Multichannel SAR: With Application to High-Resolution Wide-Swath Imaging

机译:多通道SAR的最佳信号处理:在高分辨率宽幅成像中的应用

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摘要

A new method for processing multichannel synthetic aperture radar (SAR) data to achieve desirable image characteristics is presented. The method is optimal because it is derived by minimizing a mean-square-error cost function and generalizes current methods for high-resolution wide-swath SAR signal processing. The proposed method is easily implementable, can support a wide range in the pulse repetition frequency (PRF), including cases with highly nonuniform spatial sampling, and is robust against PRFs where current projection techniques fail, cases where the PRF is ideally suited to clutter suppression. Point spread functions for the proposed algorithms are presented, and the theory and simulations are further corroborated by results using multichannel SAR data measured by RADARSAT-2. We demonstrate that, if RADARSAT-2 were able to illuminate a 250-km swath (300 km ground range), then, conceptually, the new method would be able to process the highly nonuniformly sampled data to provide an extremely wide mode at approximately 5-m azimuth resolution.
机译:提出了一种用于处理多通道合成孔径雷达(SAR)数据以实现所需图像特性的新方法。该方法是最佳的,因为它是通过最小化均方误差成本函数得出的,并概括了用于高分辨率宽带宽SAR信号处理的当前方法。所提出的方法易于实施,可以支持大范围的脉冲重复频率(PRF),包括空间采样高度不均匀的情况,并且对于当前投影技术失败的PRF具有鲁棒性,而PRF非常适合杂波抑制。提出了所提出算法的点扩展函数,并通过使用RADARSAT-2测量的多通道SAR数据的结果进一步证实了理论和仿真。我们证明,如果RADARSAT-2能够照亮250公里的地带(300公里的地面范围),那么从概念上讲,新方法将能够处理高度非均匀采样的数据,从而在大约5倍的范围内提供极宽的模式-m方位角分辨率。

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