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首页> 外文期刊>IEEE journal on electromagnetic compatibility practice and applications >GPU and CPU-Based Parallel FDTD Methods for Frequency-Dependent Transmission Line Models
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GPU and CPU-Based Parallel FDTD Methods for Frequency-Dependent Transmission Line Models

机译:基于GPU和CPU的并行FDTD方法,用于频率相关的传输线模型

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摘要

Finite-difference time-domain (FDTD) is a popular method utilized for solving frequency-dependent transmission line structures. It is also conveniently applicable to nonuniform wires. The FDTD algorithm discretizes the transmission line problem into a finite number of space-segments and solve for the voltage and current of each segment at every time-step. Therefore, they inherently involve more computations per timestep than conventional terminal based models. In this letter, parallel implementations of a modified FDTD algorithm for a frequency-dependent transmission line problem using multicore CPU and GPU architectures are proposed in order to increase its computational efficiency. Accuracy and performance of the parallel FDTD methods are discussed with examples. The results indicate that a speedup of a few folds compared to serial execution is achieved by the parallel implementation using multicore CPU architecture whereas a massive speedup is achieved by using GPU. The proposed model is also suitable for modelling transmission lines in massively parallel electromagnetic transient (EMT) simulation methods.
机译:时域有限差分(FDTD)是一个很受欢迎的方法用于解决频率相关输电线路结构。方便适用于非均匀线。FDTD算法可获得传输线问题转化为有限数量的空间部分和解决的电压和电流在每一个时间步。本质上涉及更多的计算每一个步伐比传统的基于终端模型。信,并行实现的修改频率相关的FDTD算法使用多核CPU和输电线路问题GPU的体系结构提出了为了增加它的计算效率。和并行FDTD方法的性能以实例讨论。几倍的加速比串行是通过并行执行使用多核CPU体系结构实现而大规模的加速效果的实现是通过使用GPU。造型在大规模输电线路并行电磁瞬态(EMT)仿真方法。

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