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Study on Wave Propagation and Boundary Absorption Performance using a Body-of-Revolution Finite-Difference Time-Domain (BOR-FDTD) Method

机译:用旋转体有限差分时域(BOR-FDTD)方法研究波的传播和边界吸收性能

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This paper presents some studies on electromagnetic wave propagation and absorption performance at boundary through an in-house developed solver based on a body-of-revolution finite-difference time-domain (BOR-FDTD) method. A generalized unsplit perfectly matched layer (U-PML) technique is incorporated with the solver. Time domain results on wave propagation through various structures, including parallel-plate disk, coaxial cable and general free-space, and frequency spectrum of the U-PML performance are presented. The U-PML shows a good absorption performance through flexibility in adjusting the layer thickness. The BOR-FDTD method offers tremendous savings in both computational memory and time when rotationally symmetric structures are analyzed.
机译:本文通过内部开发的基于旋转体有限差分时域(BOR-FDTD)方法的求解器,对边界上电磁波的传播和吸收性能进行了一些研究。通用非拆分完美匹配层(U-PML)技术与求解器结合在一起。给出了波在各种结构中传播的时域结果,包括平行板盘,同轴电缆和一般的自由空间,以及U-PML性能的频谱。 U-PML通过灵活调整层厚度显示出良好的吸收性能。当分析旋转对称结构时,BOR-FDTD方法可大大节省计算内存和时间。

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