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Novel ISAR Imaging Algorithm for Maneuvering Targets Based on a Modified Keystone Transform

机译:改进的梯形失真变换的新型ISAR机动目标成像算法

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A novel inverse synthetic aperture radar imaging algorithm is proposed for application when the maneuverability of an uncooperative target is not too severe, and the Doppler variation of the subechoes from the scatterers can be considered a first-order polynomial. Based on a modified keystone transform, the proposed algorithm can simultaneously transform all multicomponent linear frequency modulation subechoes into multicomponent single-frequency signals. Hence, the fast Fourier transform can be used for cross-range imaging. Simulation results also proved that the proposed algorithm is much more effective and computationally efficient than the previously reported range-instantaneous Doppler algorithms such as the Radon–Wigner transform algorithm.
机译:提出了一种新的逆合成孔径雷达成像算法,当不合作目标的机动性不太严格时,可以将散射体的子回波的多普勒变化视为一阶多项式。基于改进的梯形失真变换,该算法可以将所有多分量线性调频子回波同时变换为多分量单频信号。因此,快速傅里叶变换可用于跨范围成像。仿真结果还证明,与先前报告的距离瞬时多普勒算法(如Radon-Wigner变换算法)相比,该算法具有更高的效率和计算效率。

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