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Inversion theory as applied to the optimisation of conductivity profile for PML absorbing boundary condition for FDTD code

机译:反演理论在FDTD码的PML吸收边界条件的电导率分布优化中的应用

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摘要

A theoretical approach to obtain optimised profiles of the conductivity for the perfect matched layer (PML) absorbing boundary conditions is presented. The analytical expression recently introduced by the authors to estimate the error caused by the use of the PML backed by a metal plane as the absorbing boundary condition, has been minimised with respect to the conductivity profile following an inverse theory approach. The algorithm uses the Frechet derivative of the theoretical error expression, together with a simple regularisation technique in order to avoid the quasi-singularity intrinsic in the problem formulation. Results show that, following this approach, it is possible to easily obtain the conductivity profiles that render the performances of the absorbing boundary conditions comparable to, or better than, the best performance obtained for just a particular order of a more classic parabolic-like profile.
机译:提出了一种理论方法,以获得吸收边界条件的完美匹配层(PML)的电导率的优化曲线。作者最近引入的用于估计由金属平面支持的PML作为吸收边界条件而引起的误差的解析表达式,已按照反理论方法最小化了电导率分布。该算法使用理论误差表达式的Frechet导数以及简单的正则化技术,以避免问题表述中固有的拟奇异性。结果表明,采用这种方法,可以很容易地获得电导率分布图,从而使吸收边界条件的性能与仅对于更经典的抛物线形分布图的特定阶数所获得的最佳性能相当或更好。 。

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