MLFMA结合最佳一致逼近快速求解目标宽带RCS  被引量:12

Fast Solutions of Wide-Band RCS Pattern of Objects Using MLFMA with the Best Uniform Approximation

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作  者:田超[1] 谢拥军[1] 王元源[1] 蒋永辉[1] 

机构地区:[1]西安电子科技大学天线与微波技术国家重点实验室,西安710071

出  处:《电子与信息学报》2009年第11期2772-2775,共4页Journal of Electronics & Information Technology

基  金:国家自然科学基金(60771040);教育部新世纪优秀人才支持计划(NCET-04-0950)资助课题

摘  要:该文将多层快速多极子与最佳一致逼近结合计算了目标宽带的电磁散射特性。通过求解给定频带内的切比雪夫节点和节点处的目标表面电流,实现了频带内任意频点表面电流的快速预测,从而快速分析了目标宽带电磁散射特性。将计算结果与MLFMA逐点计算的结果进行了比较,结果表明在不影响精度的前提下,该方法大大地提高了计算效率。MultiLevel Fast Multipole Algorithm(MLFMA) in conjugation with the best uniform approximation is applied to the scattering analysis of an arbitrary shaped perfect electric conductor over a wide frequency band in this paper.The nodes of Chebyshev within a given frequency range are found firstly,and the surface electric currents at these nodes are computed with MLFMA.The surface current on perfect electric conductor is expanded in a polynomial function via the best uniform approximation,then the electric current distribution can be obtained at any frequency within the given frequency range,which is used to compute the scattered fields and the wide-band Radar Cross Section(RCS).The numerical results presented in this paper are compared with the results obtained with MLFMA at each frequency.The results show that the computational efficiency is improved drastically without sacrificing much accuracy.

关 键 词:宽带雷达散射截面 多层快速多极子算法 最佳一致逼近 

分 类 号:TN011[电子电信—物理电子学]

 

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