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Extending shooting-and-bouncing rays method with creeping waves for radar signature prediction

机译:用爬行波扩展射击和弹跳射线方法进行雷达特征预测

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The shooting-and-bouncing rays (SBR) method for solving large-scale scattering problems uses geometrical optics (GO) ray tracing to extend physical optics (PO) to multi-bounce geometries. In this paper, we explain how the accuracy of SBR for predicting radar signatures can be improved with the addition of creeping-wave (CW) rays. CW rays are launched from the shadow boundaries of convex surfaces and continue along geodesic paths into the shadow region. As they propagate, the CW rays paint surface currents in the shadow region where GO rays do not directly travel, creating delayed signature features. Further, by using a creeping wave formulation that yields continuous fields across the shadow boundary, the PO currents in the lit region are simultaneously corrected, eliminating the shadow-boundary diffraction erroneously predicted by PO.
机译:用于解决大规模散射问题的弹跳射线(SBR)方法使用几何光学(GO)射线跟踪将物理光学(PO)扩展到多反射几何。在本文中,我们解释了如何通过添加爬行波(CW)射线来提高SBR预测雷达信号的准确性。 CW射线从凸面的阴影边界发射,并沿着测地线路径进入阴影区域。随着它们的传播,CW射线会在GO射线不会直接传播的阴影区域中绘制表面电流,从而产生延迟的特征。此外,通过使用在阴影边界上产生连续场的蠕变波公式,可以同时校正亮区中的PO电流,从而消除了PO错误地预测的阴影边界衍射。

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