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首页> 外文期刊>Journal of Electrical Engineering >Performance advantages of CPML over UPML absorbing boundary conditions in FDTD algorithm
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Performance advantages of CPML over UPML absorbing boundary conditions in FDTD algorithm

机译:FDTD算法中CPML优于UPML吸收边界条件的性能优势

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Implementation of absorbing boundary condition (ABC) has a very important role in simulation performance and accuracy in finite difference time domain (FDTD) method. The perfectly matched layer (PML) is the most efficient type of ABC. The aim of this paper is to give detailed insight in and discussion of boundary conditions and hence to simplify the choice of PML used for termination of computational domain in FDTD method. In particular, we demonstrate that using the convolutional PML (CPML) has significant advantages in terms of implementation in FDTD method and reducing computer resources than using uniaxial PML (UPML). An extensive number of numerical experiments has been performed and results have shown that CPML is more efficient in electromagnetic waves absorption. Numerical code is prepared, several problems are analyzed and relative error is calculated and presented.
机译:吸收边界条件(ABC)的实现对于有限时域(FDTD)方法的仿真性能和准确性具有非常重要的作用。完美匹配层(PML)是最有效的ABC类型。本文的目的是提供对边界条件的详细了解和讨论,从而简化FDTD方法中用于终止计算域的PML的选择。特别是,我们证明,与使用单轴PML(UPML)相比,使用卷积PML(CPML)在FDTD方法中的实现以及减少计算机资源方面具有明显的优势。已经进行了大量的数值实验,结果表明CPML在电磁波吸收方面更有效。编写了数字代码,分析了一些问题,并计算了相对误差。

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