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Acceleration optimization of real-time equilibrium reconstruction for HL-2A tokamak discharge control
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作者 马瑞 夏凡 +1 位作者 凌飞 李佳鲜 《Plasma Science and Technology》 SCIE EI CAS CSCD 2018年第2期172-179,共8页
Real-time equilibrium reconstruction is crucially important for plasma shape control in the process of tokamak plasma discharge.However,as the reconstruction algorithm is computationally intensive,it is very difficult... Real-time equilibrium reconstruction is crucially important for plasma shape control in the process of tokamak plasma discharge.However,as the reconstruction algorithm is computationally intensive,it is very difficult to improve its accuracy and reduce the computation time,and some optimizations need to be done.This article describes the three most important aspects of this optimization:(1) compiler optimization;(2) some optimization for middle-scale matrix multiplication on the graphic processing unit and an algorithm which can solve the block tri-diagonal linear system efficiently in parallel;(3) a new algorithm to locate the X&O point on the central processing unit.A static test proves the correctness and a dynamic test proves the feasibility of using the new code for real-time reconstruction with 129?×?129 grids;it can complete one iteration around 575 μs for each equilibrium reconstruction.The plasma displacements from real-time equilibrium reconstruction are compared with the experimental measurements,and the calculated results are consistent with the measured ones,which can be used as a reference for the real-time control of HL-2 A discharge. 展开更多
关键词 tokamak equilibrium reconstruction plasma displacement gpu cuda
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HL-2A等离子体实时平衡重建的GPU并行化 被引量:1
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作者 马瑞 夏凡 +1 位作者 凌飞 李佳鲜 《核聚变与等离子体物理》 CSCD 北大核心 2017年第2期159-166,共8页
描述了HL-2A等离子体实时平衡重建的GPU并行化算法,主要包括G-S方程的并行化处理、三对角方程求解、网格边界磁通计算以及一系列矩阵相乘的并行加速。并行后,在129×129的网格下完成一次迭代计算需要约575μs。
关键词 HL-2A装置 平衡重建 图形处理器 通用计算架构
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