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Improvement in Computation Time of 3-D Scattering Center Extraction Using the Shooting and Bouncing Ray Technique

机译:利用弹跳线技术改善3D散射中心提取的计算时间

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We present a fast 3-D scattering center extraction algorithm using the shooting and bouncing ray technique. The proposed algorithm generates a 3-D inverse synthetic aperture radar image from which a set of 3-D scattering centers is then extracted using the CLEAN algorithm. In the conventional extraction algorithm, computation time is improved using the fast Fourier transform (FFT)-based scheme. However, the memory requirement is greatly increased because of the high oversampling required to mitigate the interpolation error. Evaluation of memory-time tradeoffs indicates that the conventional algorithm is still too time consuming given the constraints of practical memory. Thus, a modified FFT-based scheme is proposed to improve computation time without increasing the memory requirement. Through modifying the ray spread function, the distortion from the interpolation error is mitigated without the use of high oversampling. Implementation based on the proposed FFT-based scheme accelerates the image formation process significantly. Numerical simulations of realistic targets are presented to demonstrate the performance of the proposed algorithm.
机译:我们提出一种使用射击和弹跳射线技术的快速3-D散射中心提取算法。所提出的算法生成3-D逆合成孔径雷达图像,然后使用CLEAN算法从中提取一组3-D散射中心。在传统的提取算法中,使用基于快速傅里叶变换(FFT)的方案可以缩短计算时间。然而,由于减轻内插误差所需的高过采样率,大大增加了存储需求。存储器时间权衡的评估表明,鉴于实际存储器的限制,传统算法仍然太耗时。因此,提出了一种改进的基于FFT的方案,以在不增加存储需求的情况下缩短计算时间。通过修改射线扩散函数,可以减轻插值误差带来的失真,而无需使用高过采样。基于提出的基于FFT的方案的实现显着加快了图像形成过程。提出了对实际目标的数值模拟,以证明所提出算法的性能。

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