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Three dimensional simulation of ion thruster plume-spacecraft interaction based on a graphic processor unit

机译:基于图形处理器单元的离子推进器羽流与航天器相互作用的三维模拟

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摘要

Based on the three-dimensional particle-in-cell (PIC) method and Compute Unified Device Architecture (CUDA), a parallel particle simulation code combined with a graphic processor unit (GPU) has been developed for the simulation of charge-exchange (CEX) xenon ions in the plume of an ion thruster. Using the proposed technique, the potential and CEX plasma distribution are calculated for the ion thruster plume surrounding the DS1 spacecraft at different thrust levels. The simulation results are in good agreement with measured CEX ion parameters reported in literature, and the GPU's results are equal to a CPU's. Compared with a single CPU Intel Core 2 E6300, 16-processor GPU NVIDIA GeForce 9400 GT indicates a speedup factor of 3.6 when the total macro particle number is 1.1×10~6. The simulation results also reveal how the back flow CEX plasma affects the spacecraft floating potential, which indicates that the plume of the ion thruster is indeed able to alleviate the extreme negative floating potentials of spacecraft in geosynchronous orbit.
机译:基于三维粒子(PIC)方法和Compute Unified Device Architecture(CUDA),已开发了结合图形处理器单元(GPU)的并行粒子模拟代码以模拟电荷交换(CEX) )离子推进器羽流中的氙离子。使用提出的技术,计算了在不同推力水平下围绕DS1航天器的离子推进器羽流的电势和CEX等离子体分布。仿真结果与文献报道的测得的CEX离子参数非常吻合,GPU的结果与CPU的结果相同。与单CPU Intel Core 2 E6300相比,当总宏粒子数为1.1×10〜6时,具有16个处理器的GPU NVIDIA GeForce 9400 GT的加速因子为3.6。仿真结果还揭示了回流CEX等离子体如何影响航天器的漂浮势,这表明离子推进器的羽流确实能够缓解地球同步轨道上航天器的极端负漂浮势。

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