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Optronic High-Resolution SAR Processing With the Capability of Adaptive Phase Error Compensation

机译:具有自适应相位误差补偿功能的光电高分辨率SAR处理

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摘要

A system design of optronic high-resolution synthetic aperture radar (SAR) processing is proposed in this letter; it has the capability of adaptive phase error compensation. In our system design, SAR raw data are focused optically by phase correction in the two-dimensional frequency domain. The computations of SAR image formation are performed by spatial light modulators and lenses. With the propagation of the laser beam, the imaging results can be captured by the charge-coupled device. The phase error can be estimated from the imaging results, and adaptive phase error compensation is implemented in the optronic processing. Phase error compensation makes the optronic processing robust and flexible; it can be used for both the initial system calibration and the focus quality improvement. Finally, the experimental setup is demonstrated. The entropies of the images with and without phase error compensation are analyzed, which validates its performance on improving the focus quality. The real data results of an airborne SAR and RADARSAT are given.
机译:本文提出了一种光电子高分辨率合成孔径雷达(SAR)处理的系统设计;它具有自适应相位误差补偿的能力。在我们的系统设计中,SAR原始数据通过二维频域中的相位校正以光学方式聚焦。 SAR图像形成的计算由空间光调制器和镜头执行。随着激光束的传播,电荷耦合器件可以捕获成像结果。可以从成像结果估计相位误差,并在光电处理中实现自适应相位误差补偿。相位误差补偿使光电处理功能强大而灵活。它可用于初始系统校准和聚焦质量改善。最后,演示了实验设置。分析了具有和没有相位误差补偿的图像的熵,从而验证了其在改善聚焦质量上的性能。给出了机载SAR和RADARSAT的真实数据结果。

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