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A Novel 2-D Spectrum Model for Bistatic SAR Based on Hyperbolic Approximation

机译:基于双曲逼近的双晶特性的新型二维频谱模型

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Due to the fact that the range history of bistatic synthetic aperture radar (SAR) doesn't follow the hyperbolic function, the accurate analytical spectrum of bistatic SAR cannot be obtained directly by the principle of stationary phase (POSP). In this paper, we approximate the range history of bistatic SAR by the hyperbolic function, and propose a novel two-dimensional (2-D) analytical spectrum model for bistatic SAR. The huge advantage of this novel 2-D analytical spectrum is that the equivalent radial velocity of any scatter point in the observed scene, with respect to the radar platform, is not only the same but also invariant with the equivalent range. Further, based on this novel spectrum model, the wavenumber domain algorithm (WDA) could be applied to image the whole observed scene. Finally, the simulation and realistic data imaging results also validate that this novel spectrum model is correct and effective.
机译:由于基础合成孔径雷达(SAR)的范围历史不遵循双曲函数,因此不能通过固定相(POS)的原理直接获得BISTIC SAR的精确分析光谱。在本文中,我们通过双曲线函数近似于双曲函数的距离历史,并提出了一种用于双向SAR的二维(2-D)分析谱模型。该新颖的2-D分析谱的巨大优点是观察到的场景中的任何散射点的等效径向速度,相对于雷达平台,不仅相同,而且还具有等同范围的不变。此外,基于该新颖频谱模型,可以将波数域算法(WDA)应用于整个观察到的场景。最后,仿真和现实数据成像结果还验证了这种新颖的频谱模型是正确有效的。

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