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Large-Scale Transient Stability Simulation of Electrical Power Systems on Parallel GPUs

机译:并行GPU上电力系统的大规模暂态稳定性仿真

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This paper proposes large-scale transient stability simulation based on the massively parallel architecture of multiple graphics processing units (GPUs). A robust and efficient instantaneous relaxation (IR)-based parallel processing technique which features implicit integration, full Newton iteration, and sparse LU-based linear solver is used to run the multiple GPUs simultaneously. This implementation highlights the combination of coarse-grained algorithm-level parallelism with fine-grained data-parallelism of the GPUs to accelerate large-scale transient stability simulation. Multithreaded parallel programming makes the entire implementation highly transparent, scalable, and efficient. Several large test systems are used for the simulation with a maximum size of 9,984 buses and 2,560 synchronous generators all modeled in detail resulting in matrices that are larger than 20hbox{,}000times 20hbox{,}000.
机译:本文提出了基于多个图形处理单元(GPU)的大规模并行体系结构的大规模瞬态稳定性仿真。基于健壮和高效的基于瞬时松弛(IR)的并行处理技术可同时运行多个GPU,该技术具有隐式积分,完整的牛顿迭代和基于稀疏LU的线性求解器的功能。此实现突出显示了GPU的粗粒度算法级并行性与细粒度数据并行性的结合,以加速大规模瞬态稳定性仿真。多线程并行编程使整个实现高度透明,可扩展且高效。用于仿真的几个大型测试系统最大尺寸为9,984总线和2,560台同步发电机,所有这些都进行了详细建模,得出的矩阵大于20hbox {,} 000乘以20hbox {,} 000。

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