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A Fast Optimization Algorithm of FEM/BEM Simulation for Periodic Surface Acoustic Wave Structures

机译:周期性表面声波结构的FEM / BEM仿真快速优化算法

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The accurate analysis of periodic surface acoustic wave (SAW) structures by combined finite element method and boundary element method (FEM/BEM) is important for SAW design, especially in the extraction of couple-of-mode (COM) parameters. However, the time cost is very large. With the aim to accelerate the calculation of SAW FEM/BEM analysis, some optimization algorithms for the FEM and BEM calculation have been reported, while the optimization for the solution to the final FEM/BEM equations which is also with a large amount of calculation is hardly reported. In this paper, it was observed that the coefficient matrix of the final FEM/BEM equations for the periodic SAW structures was similar to a Toeplitz matrix. A fast algorithm based on the Trench recursive algorithm for the Toeplitz matrix inversion was proposed to speed up the solution of the final FEM/BEM equations. The result showed that both the time and memory cost of FEM/BEM was reduced furtherly.
机译:结合有限元法和边界元法(FEM / BEM)对周期声表面波(SAW)结构进行准确的分析对于SAW设计非常重要,尤其是在提取模态耦合(COM)参数时。但是,时间成本非常大。为了加速SAW FEM / BEM分析的计算,已经报道了一些用于FEM和BEM计算的优化算法,而对于最终FEM / BEM方程的求解的优化也是大量的计算。几乎没有报道。在本文中,观察到周期性SAW结构的最终FEM / BEM方程的系数矩阵类似于Toeplitz矩阵。提出了一种基于Trench递归算法的Toeplitz矩阵求逆的快速算法,以加快最终FEM / BEM方程的求解速度。结果表明,FEM / BEM的时间和存储成本都进一步降低。

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