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Volume Equivalent SBR Method for Electromagnetic Scattering of Dielectric and Composite Objects

机译:电介质和复合物体电磁散射的体积等效SBR方法

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A volume equivalent shooting and bouncing ray (VESBR) method is proposed to analyze the electromagnetic scattering of dielectric and composite objects with thick dielectric medium. Different from traditional high-frequency methods which utilize surface sources, this VESBR considers the propagation of electromagnetic waves inside the dielectric media and introduces volume equivalent sources to calculate the scattering fields. Compared with traditional methods, two different problems need to be solved in this method, i.e., the ray tracing on dielectric boundary and the volume integral in ray tube. For ray tracing process, a refined formula is proposed to acquire the information of reflection waves and transmission waves on dielectric boundary. For volume integral in ray tube, the integral is transformed to five surface integrals based on Gauss's law. The simulations of four cases show that the results of VESBR agree well with those of surface integral equation (SIE), while the computation time and the required memory of VESBR are much less than those of SIE.
机译:提出了一种体积当量拍摄和弹跳射线(VESBR)方法以分析与厚的介电介质的电介质和复合对象的电磁散射。从其中利用表面源的传统的高频的方法不同,这VESBR考虑电磁波的电介质媒介和介绍体积等效源内的传播来计算散射字段。与传统方法相比,需要在该方法中需要解决,即,电介质射线边界和在射线管的体积积分上跟踪两个不同的问题。用于光线追踪处理,精制式建议获取反射波和透射波的电介质的边界上的信息。对于射线管体积积分,积分转换为基于高斯定律五角面积分。四例的模拟表明,VESBR的结果与表面积分方程(SIE)的吻合,而计算时间和VESBR的所需的内存比SIE的要少得多。

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