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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >Domain Decomposition Method Based on Generalized Scattering Matrix for Installed Performance of Antennas on Aircraft
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Domain Decomposition Method Based on Generalized Scattering Matrix for Installed Performance of Antennas on Aircraft

机译:基于广义散射矩阵的区域分解方法对飞机天线安装性能的影响

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摘要

We describe the factorization (FACTOPO) domain decomposition method based on the boundary element method (BEM) and the finite element method (FEM) applied to the analysis of antenna performance on aircraft. The benefits of the subdomain method are mainly the ability to deal with collaborative studies involving several companies, and the reduction of the computation costs by one or more orders of magnitude, especially in the context of parametric studies. Furthermore, this paper proposes global functions defined on fictitious surfaces surrounding radiating elements, to deal with the computation of antenna far field patterns in a multidomain mode. By masking the complexity of the antenna (wires, thin surfaces, materials, feeding network) the external domain of the aircraft can be closed so that the combined field integral equation can be used, which is better conditioned than the electric field integral equation and converges much faster. The accuracy and efficiency of this technique is assessed by directivity computations of VHF monopole antennas mounted on Fokker 100 and ATR42 scaled mock-up. Domain decomposition results obtained by combining two sets of subdomains are compared with measurements and the FEKO commercial method of moments code.
机译:我们描述了基于边界元方法(BEM)和有限元方法(FEM)的因式分解(FACTOPO)域分解方法,该方法应用于飞机天线性能的分析。子域方法的好处主要是能够处理涉及多家公司的协作研究,并且可以将计算成本降低一个或多个数量级,尤其是在参数研究的情况下。此外,本文提出了在辐射元件周围虚拟表面上定义的全局函数,以处理多域模式下天线远场方向图的计算。通过掩盖天线(电线,薄表面,材料,馈电网络)的复杂性,可以封闭飞机的外部区域,从而可以使用组合场积分方程,该条件比电场积分方程更好,并且可以收敛快多了。该技术的准确性和效率通过安装在Fokker 100和ATR42比例模型上的VHF单极天线的方向性计算来评估。将通过组合两组子域获得的域分解结果与测量值和矩码的FEKO商业方法进行比较。

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