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首页> 外文期刊>IEEE Transactions on Antennas and Propagation >A New Efficient Algorithm for 3-D Laguerre-Based Finite-Difference Time-Domain Method
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A New Efficient Algorithm for 3-D Laguerre-Based Finite-Difference Time-Domain Method

机译:基于3-D Laguerre的有限差分时域方法的一种新的高效算法

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摘要

We previously introduced a new efficient algorithm for implementing the 2-D Laguerre-based finite-difference time-domain (FDTD) method. The new 2-D efficient algorithm is based on the use of an iterative procedure to reduce the splitting error associated with the perturbation term, and it does not involve any nonphysical intermediate variables. Numerical results indicated that the new efficient algorithm shows better performance for modeling some regions with larger spatial derivatives of the field. In this paper, we extend this approach to a full 3-D wave. Numerical formulations of the new 3-D Laguerre-based FDTD method are devised and simulation results are compared to those using the conventional 3-D FDTD method and the alternating-direction implicit (ADI) FDTD method. We numerically verify that, at the comparable accuracy, the efficiency of the proposed method with an iterative procedure is superior to the FDTD method and the ADI -FDTD method. Also, in order to verify the stability of the iterative procedure, we present a convergence analysis and a long-time simulation to it in the paper.
机译:之前,我们介绍了一种新的高效算法,用于实现基于二维Laguerre的有限差分时域(FDTD)方法。新的2-D有效算法基于迭代过程的使用,以减少与微扰项相关的分裂误差,并且它不涉及任何非物理中间变量。数值结果表明,该新的高效算法在对某些具有较大空间派生域的区域进行建模时表现出更好的性能。在本文中,我们将这种方法扩展到完整的3D波。设计了基于3-D Laguerre的FDTD新方法的数值公式,并将仿真结果与使用常规3-D FDTD方法和交替方向隐式(ADI)FDTD方法的结果进行了比较。我们数值验证了,在可比较的精度下,所提出的方法具有迭代过程的效率优于FDTD方法和ADI -FDTD方法。另外,为了验证迭代过程的稳定性,我们在本文中进行了收敛性分析和长时间的仿真。

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