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EFFICIENT ANALYSIS OF PERIODIC STRUCTURES USING THE FINITE-ELEMENT AND SOC TECHNIQUES

机译:利用有限元和SOC技术对周期结构进行有效分析

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摘要

A combined algorithm of the edge-based finite-element method (FEM) and the short-open calibration (SOC) technique is presented in order to analyze periodic structures. The computational domain is reduced to a unit cell through the use of waveguide simulators, To accurately predict the characteristics of periodic structures, the SOC technique is directly accommodated into the FEM formulation and removes unwanted parasitic errors brought about by the approximation of exciting sources. The developed FEM algorithm improves the accuracy of the solution and causes the rapid convergence of iterative solvers, when compared to the FEM combined with perfectly matching layers (PMLs) or absorbed boundary conditions (ABCs), The results for some periodic structures are given to show the accuracy and rapidity of the algorithm.
机译:提出了一种基于边缘的有限元方法(FEM)和短开标定(SOC)技术的组合算法,以分析周期结构。通过使用波导仿真器,计算域减少到了一个晶胞。为了精确预测周期性结构的特性,SOC技术直接纳入FEM公式中,并消除了由激励源近似引起的不必要的寄生误差。与与完美匹配层(PML)或吸收边界条件(ABC)组合的FEM相比,改进的FEM算法提高了求解的精度并引起迭代求解器的快速收敛,给出了一些周期结构的结果,表明算法的准确性和快速性。

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