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Method for processing TOPS (terrain observation by progressive scan)-SAR (synthetic aperture radar)-raw data

机译:一种tops(逐行扫描地形观测)-sara(合成孔径雷达)原始数据的处理方法

摘要

Sub-aperture processing is carried out. Within each sub-aperture, range compression and a correction for the target range variation are carried out. Baseband azimuth scaling is used for processing the azimuth signal, wherein a long azimuth reference function and thus a wide azimuth dimension are prevented. The scaling range is not constant and depends on the range, which is not equal to the original range vector. It is calculated such that, in combination with a subsequent derotation step, constant azimuth scanning is achieved for all ranges. The selected derotation function, which is applied in the azimuth time domain, makes it possible for all the targets to be in base band, in this way varying the effective chirp rate. Since the phase is purely quadratic because of the azimuth scaling step, it is thus possible to use an optimal filter which takes account of the effective chirp rate. IFFT results in a focused image, and a final phase function in the time domain allows phase maintenance. Application for SAR, SONAR and seismic raw data processing in the TOPS mode, as well as other modes which make use of the antenna polar diagram being scanned in the azimuth and/or elevation direction.
机译:进行子光圈处理。在每个子孔径内,执行范围压缩和目标范围变化的校正。基带方位角定标用于处理方位角信号,其中,防止了较长的方位角参考函数,从而防止了较大的方位角尺寸。缩放范围不是恒定的,并且取决于范围,该范围不等于原始范围向量。计算得出,结合随后的旋转步骤,可以在所有范围内实现恒定的方位角扫描。在方位角时域中应用的选定反旋转函数使所有目标都可以处于基带中,从而可以改变有效线性调频率。由于由于方位角缩放步骤而使相位纯二次,因此可以使用考虑有效线性调频率的最佳滤波器。 IFFT产生聚焦的图像,并且时域中的最终相位函数允许相位保持。在TOPS模式下以及在其他模式下使用SAR,SONAR和地震原始数据处理的应用程序,这些模式利用了在方位角和/或仰角方向上扫描的天线极化图。

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