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A PARALLEL IMPLEMENTATION FOR REAL-TIME TRANSIENT STABILITY SIMULATION OF LARGE-SCALE POWER SYSTEMS

机译:大型电力系统实时暂态仿真的并行实现

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With the rapid development of power system, on-line security analysis based on dynamic process simulation has become more and more important in power system operation. Transient stability analysis, which focuses on the simulation of short-time dynamic process after faults, is where the most intensive computation locates and also the bottleneck of on-line security analysis for large-scale power system, In this paper, based on power system regional characteristics, a multilevel task-scheduling scheme was presented. Meanwhile, a hierarchical power network parallel algorithm in interlaced alternating implicit transient stability approach was proposed and implemented. Numerical results of actual power networks have shown that the task scheduling scheme and the parallel network algorithm of transient stability analysis are efficient and scalable. Its implementation on cluster system can run much faster than real-tune dynamic process. The parallel transient stability simulation shown in this paper can fulfill the requirements of real-tune simulation for large-scale power grids.
机译:随着电力系统的飞速发展,基于动态过程仿真的在线安全分析在电力系统运行中变得越来越重要。暂态稳定分析是故障后短时动态过程仿真的重点,它是最密集的计算所在,也是大型电力系统在线安全分析的瓶颈,本文基于电力系统区域特征,提出了一种多级任务调度方案。同时,提出并实现了交错交替隐式暂态稳定方法中的分层电网并行算法。实际电网的数值结果表明,暂态稳定分析的任务调度方案和并行网络算法是高效且可扩展的。它在集群系统上的实现比实际调整的动态过程运行得快得多。本文所示的并行暂态稳定仿真可以满足大规模电网实时仿真的要求。

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