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Combining an extrapolation technique with the method of moments for solving large scattering problems involving bodies of revolution

机译:将外推技术与矩量法相结合,以解决涉及旋转体的大散射问题

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The purpose of this work is to combine an extrapolation technique with the method of moments (MoM) to solve scattering problems involving large bodies. It has been shown in a previous work that the current induced on the smooth parts of large scatterers may be represented as a series of complex exponential functions with a few terms. Based on this concept, a hybrid set of basis functions is constructed using entire domain functions of complex exponential type on the smooth portion of the scatterer, complemented by subdomain basis functions near edges and discontinuities. An extrapolation procedure is developed in which the scattering problem is first solved for a portion of the scatterer using the conventional MoM. Next, a set of entire-domain basis functions, whose behaviour could be extrapolated with an increase in the size of the scatterer, is extracted from this original solution. The procedure outlined has the very desirable feature that the total number of basis functions remains unchanged even as the scatterer size is increased, allowing for large scatterers to be handled with a relatively small number of unknowns. The extrapolation technique is applied to scattering problems from bodies of revolution (BORs), and numerical results for an open cylinder and a barrel-shaped BOR are presented.
机译:这项工作的目的是将外推技术与矩量法(MoM)相结合,以解决涉及大型物体的散射问题。在先前的工作中已经表明,在大型散射体的平滑部分上感应的电流可以表示为一系列带有几项的复指数函数。基于此概念,在散射体的平滑部分上使用复杂指数类型的整个域函数构造基本函数的混合集,并在边缘和不连续点附近添加子域基本函数。开发了一种外推程序,其中首先使用常规MoM解决了一部分散射体的散射问题。接下来,从此原始解决方案中提取了一组全域基本函数,这些函数的行为可以通过散射体大小的增加来推断。概述的过程具有非常理想的功能,即即使散射体大小增加,基本功能的总数也保持不变,从而允许使用相对较少的未知数来处理大型散射体。将外推技术应用于旋转体(BOR)的散射问题,并给出了开缸和桶形BOR的数值结果。

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