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Real-time synthetic aperture radar (SAR) processing with a new subaperture approach

机译:采用新的子孔径方法的实时合成孔径雷达(SAR)处理

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摘要

A time-domain subaperture approach that is suitable for real-time synthetic aperture radar (SAR) processing and that produces high-quality, full-resolution images is presented. The real-time subaperture algorithm is based on an approximation of the phase history correction in each subaperture with a simple linear correction, which can be carried out by an up/down-conversion of the received signal followed by a moving average operation. The characteristics of the impulse response function are improved considerably by means of a frequency overlap of the subapertures and become comparable to a conventional matched filter response. Special algorithms for high-quality SAR processing, such as autofocus, Doppler centroid estimation, and range migration correction, can be efficiently implemented. High flexibility is achieved for multilook processing and no secondary range compression is needed, even for high squint angles.
机译:提出了一种时域子孔径方法,该方法适用于实时合成孔径雷达(SAR)处理并产生高质量的全分辨率图像。实时子孔径算法基于每个子孔径的相位历史校正与简单线性校正的近似值,可以通过对接收信号进行上/下转换,然后进行移动平均运算来执行。脉冲响应函数的特性通过子孔径的频率重叠得到了显着改善,并且可以与传统的匹配滤波器响应进行比较。可以有效地实现用于高质量SAR处理的特殊算法,例如自动聚焦,多普勒质心估计和距离偏移校正。即使是大斜视角度,也可以实现多视图处理的高度灵活性,并且不需要二级压缩。

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