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A butterfly algorithm for synthetic aperture radar

机译:合成孔径雷达的蝶形算法

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It is not currently known if it is possible to accurately form a synthetic aperture radar image from N data points in provable near-linear complexity, where accuracy is defined as the ℓ2 error between the full O(N2) backprojection image and the approximate image. To bridge this gap, we present a backprojection algorithm with complexity O(log(1/ϵ)N log N), with ϵ the tunable pixelwise accuracy. It is based on the butterfly scheme, which works for vastly more general oscillatory integrals than the discrete Fourier transform. Unlike previous methods this algorithm allows the user to directly choose the amount of acceptable image error based on a well-defined metric. Additionally, the algorithm does not invoke the far-field approximation or place restrictions on the antenna flight path, nor does it impose the frequency-independent beampattern approximation required by time-domain backprojection techniques
机译:目前尚不知道是否有可能以可证明的近线性复杂度从N个数据点准确形成合成孔径雷达图像,其中精度定义为完整O(N2)反投影图像和近似图像之间的ℓ2误差。为了弥合这一差距,我们提出了一种反投影算法,其复杂度为O(log(1 /))N log N),像素精度可调为。它基于蝶形方案,与离散傅立叶变换相比,它能处理更广泛的振荡积分。与以前的方法不同,该算法允许用户基于定义明确的指标直接选择可接受的图像误差量。此外,该算法不会在天线飞行路径上调用远场近似或放置限制,也不会施加时域反投影技术所需的与频率无关的波束方向图近似

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