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Fast and Efficient Analysis of Radome-Enclosed Antennas in Receiving Mode by an Iterative-Based Hybrid Integral Equation/Modified Surface Integration Method

机译:基于迭代的混合积分方程/修正面积分法快速有效地分析天线罩内天线的接收模式

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摘要

An iterative-based hybrid method, which combines the volume-surface integral equation (VSIE) and the modified surface integration (MSI) method, is presented to analyze the radome-enclosed antennas in receiving mode. Compared with the previously published hybrid approaches, this method improves computational accuracy by including the effects of shaded wall of the radome and the mutual interactions between antennas and radome during the numerical solution of the VSIE in an iterative manner. By embedding different parts of the antenna-radome structure (ARS) into three distinct oct-trees, the multilevel fast multipole algorithm (MLFMA) is used to accelerate both the VSIE solution and the surface/volume integrations in the MSI stage. The new method obtains more accurate results than its original version within less CPU time, and keeps good accuracy with much less memory usage and computational time when compared with the MLFMA-accelerated full-wave VSIE solution for the entire ARS.
机译:提出了一种基于迭代的混合方法,该方法结合了体积表面积分方程(VSIE)和改进的表面积分(MSI)方法,以分析接收模式下的天线罩封闭天线。与以前发布的混合方法相比,此方法通过以迭代方式包括VSIE数值求解过程中的天线罩的阴影壁以及天线与天线罩之间的相互作用,从而提高了计算精度。通过将天线-天线罩结构(ARS)的不同部分嵌入三个不同的八叉树,多级快速多极算法(MLFMA)可用于在MSI阶段加速VSIE解决方案和表面/体积集成。与整个ARS的MLFMA加速全波VSIE解决方案相比,该新方法在更短的CPU时间内获得了比其原始版本更准确的结果,并且保持了良好的准确性,同时减少了内存使用量和计算时间。

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