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An adaptive filtering approach to spectral estimation and SAR imaging

机译:频谱估计和SAR成像的自适应滤波方法

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We present an adaptive FIR filtering approach, which is referred to as the amplitude and phase estimation of a sinusoid (APES), for complex spectral estimation. We compare the APES algorithm with other FIR filtering approaches including the Welch (1967) and Capon (1969) methods. We also describe how to apply the FIR filtering approaches to target range signature estimation and synthetic aperture radar (SAR) imaging. We show via both numerical and experimental examples that the adaptive FIR filtering approaches such as Capon and APES can yield more accurate spectral estimates with much lower sidelobes and narrower spectral peaks than the FFT method, which is also a special case of the FIR filtering approach. We show that although the APES algorithm yields somewhat wider spectral peaks than the Capon method, the former gives more accurate overall spectral estimates and SAR images than the latter and the FFT method.
机译:我们提出了一种自适应FIR滤波方法,称为正弦波(APES)的幅度和相位估计,用于复杂频谱估计。我们将APES算法与其他FIR滤波方法(包括Welch(1967)和Capon(1969))进行了比较。我们还将描述如何将FIR滤波方法应用于目标范围特征估计和合成孔径雷达(SAR)成像。我们通过数值和实验示例表明,与FFT方法相比,Capon和APES等自适应FIR滤波方法可以产生更准确的频谱估计,且旁瓣和频谱峰值更窄,这也是FIR滤波方法的特例。我们显示,虽然APES算法产生的光谱峰比Capon方法要宽一些,但前者比后者和FFT方法能提供更准确的整体光谱估计和SAR图像。

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