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Efficient Integral Equation Based Solvers for Modelling Antennas Mounted on Electrically Large and Complex Platform

机译:基于高效的基于整体式的求解器,用于安装在电大型和复杂平台上的天线

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Efficient modelling of the performance of antennas mounted on electrically large and complex platform is essential for practical antenna design with considering environment effect and yet a challenging area in electromagnetic compatibility (EMC) assessment. This paper presents our team efforts to tackle this problem through three ways: (1) fast full-wave simulation code development with technical core of surface-wire integral equation (SWIE) and precorrected-FFT (P-FFT) algorithm; (2) efficient hybrid low and high frequency modelling capability with technical core of a newly developed efficient iterative method of moments (MoM) - physical optics (PO) hybrid method; (3) hardware accelerated simulation capability with technical core of parallel P-FFT implementation for solving SWIE on GPU. Successful simulation of many standard benchmarks and realistic targets extensively validates the proposed three techniques.
机译:高效建模安装在电气大型和复杂平台上的天线的性能对于实际天线设计,考虑环境效应以及电磁兼容性(EMC)评估中的具有挑战性区域是必不可少的。本文提出了我们的团队努力通过三种方式解决这个问题:(1)快速全波仿真码开发,具有表面丝积分方程(SWIE)和预腐烂-FFT(P-FFT)算法的技术核心; (2)高效的杂交低,高频建模能力,具有新开发的高效迭代方法(MOM) - 物理光学(PO)杂种方法的技术核心; (3)硬件加速仿真能力,采用并行P-FFT实现技术核心解决GPU的SWIE。许多标准基准和现实目标的成功模拟广泛地验证了提出的三种技术。

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