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New Accurate Subentire-Domain Basis Functions Method for the Analysis of Large-Scale Finite Periodic Structures with Electrically Connected Cells

机译:具有电连接单元的大型有限周期结构分析的新精确子域域基函数方法

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摘要

Accurate subentire-domain (ASED) basis functions method have been proved efficient for solving large-scale finite periodic structures (LFPSs) with electrically isolated elements, based on utilizing ASED basis functions. These basis functions, defined on macrodomains (blocks) including a relatively large number of Rao-Wilton-Glisson (RWG) basis functions, lead to a great reduction in the number of the unknowns and result in the substantial size reduction of the original method of moment matrix. However, the ASED basis functions method cannot obtain an accurate analysis of the LFPSs with electrically connected cells. In this communication, a new ASED basis functions method, based on the ASED basis functions, is proposed to solve the electromagnetic scattering problem of the LFPSs with electrically connected cells. In the new method, the multiple plane waves are employed to excite the 3x3 array and construct more ASED basis functions. Due to the intrinsic continuity of the first 3x3 array problem, the new ASED basis functions method do not request any overlap between adjacent unit cells, or any "connection" basis functions. In addition, the new ASED basis functions method merges the advantage of the multiple PWs on the efficient computation of monostatic radar cross section (RCS). Numerical examples are given to prove the accuracy and efficiency of the new ASED basis functions method including the computation of both bistatic and monostatic RCSs.
机译:在利用ASED基函数的基础上,已经证明了精确的亚整数域(ASED)基函数方法可有效解决带有电隔离元件的大规模有限周期结构(LFPS)。这些在宏域(块)上定义的基本函数(包括相对大量的Rao-Wilton-Glisson(RWG)基本函数)导致未知数的数量大大减少,并且导致原始方法的大小显着减小。矩矩阵。但是,ASED基函数方法无法获得具有电连接单元的LFPS的准确分析。在这种通信中,提出了一种新的基于ASED基函数的ASED基函数方法,以解决具有电连接单元的LFPS的电磁散射问题。在新方法中,采用多个平面波来激发3x3阵列并构造更多的ASED基函数。由于第一个3x3数组问题的固有连续性,新的ASED基本函数方法不要求相邻单位单元之间的任何重叠或任何“连接”基本函数。此外,新的ASED基函数方法融合了多个PW的优势,可以有效地计算出单基地雷达截面(RCS)。数值例子证明了新的ASED基函数方法的准确性和效率,包括双静态和单静态RCS的计算。

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