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Parallel Particle-in-Cell Monte-Carlo Algorithm for Simulation of Gas Discharges under PVM and MPI

机译:在PVM和MPI下模拟气体放电的并行单元粒子蒙特卡洛算法

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摘要

The simulation of complex problems in the field of plasma deposition technology requires the usage of parallel code running on modern multicore architectures. The inhouse developed Particle-in-Cell Monte-Carlo (PIC-MC) simulation environment has recently been ported from PVM towards MPI, which is the de-facto standard for parallelization by message passing. We measured a shorter latency time of MPI in comparison with PVM and determined the impact on the PIC-MC performance.
机译:等离子体沉积技术领域中复杂问题的仿真需要使用在现代多核体系结构上运行的并行代码。内部开发的单元内蒙特卡洛粒子仿真(PIC-MC)仿真环境最近已从PVM移植到MPI,MPI是通过消息传递进行并行化的实际标准。与PVM相比,我们测量了MPI的延迟时间较短,并确定了对PIC-MC性能的影响。

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