首页> 外文期刊>Geoscience and Remote Sensing Letters, IEEE >Using Derivatives of an Implicit Function to Obtain the Stationary Phase of the Two-Dimensional Spectrum for Bistatic SAR Imaging
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Using Derivatives of an Implicit Function to Obtain the Stationary Phase of the Two-Dimensional Spectrum for Bistatic SAR Imaging

机译:使用隐式函数的导数获取二维频谱的平稳相位用于双基地SAR成像

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摘要

There are two square-root terms in the range history of a return signal from a bistatic synthetic aperture radar (BiSAR). The transfer function for imaging in the 2-D frequency or range Doppler domain using the principle of stationary phase cannot be analytically derived. To address this problem, we approximated the stationary phase of the 2-D spectrum with an expansion of the Taylor series on the azimuth frequency and called the approximation as the derivatives of an implicit function (DIF). After algebraic manipulation, the DIF and 2-D spectrum were obtained for a generally configured BiSAR. With the DIF method, we dissolved one square-root term out of the two for an azimuth-invariant BiSAR, which is particularly advantageous in the implementation of an imaging algorithm. Then, a modified range Doppler algorithm was developed to process the BiSAR data. Promising results were obtained.
机译:来自双基地合成孔径雷达(BiSAR)的返回信号的范围历史中有两个平方根项。使用固定相位原理无法在二维频率或范围多普勒域成像的传递函数得到解析。为了解决这个问题,我们通过在方位角频率上扩展泰勒级数来逼近二维频谱的固定相位,并将这种近似称为隐函数(DIF)的导数。经过代数运算后,获得了通常配置的BiSAR的DIF和2-D光谱。使用DIF方法,我们将方位角不变的BiSAR的两个平方根项都溶解掉了,这在成像算法的实现中特别有利。然后,开发了一种改进的距离多普勒算法来处理BiSAR数据。获得了有希望的结果。

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