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首页> 外文期刊>IEEE Transactions on Power Systems >Parallel implementation of a power system dynamic simulation methodology using the conjugate gradient method
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Parallel implementation of a power system dynamic simulation methodology using the conjugate gradient method

机译:使用共轭梯度法的电力系统动态仿真方法的并行实现

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The authors present results of tests with a parallel implementation of a power system dynamic simulation methodology for transient stability analysis in a parallel computer. The test system is a planned configuration of the interconnected Brazilian South-Southeastern power system with 616 buses, 995 lines, and 88 generators. The parallel machine used in the computer simulation is a distributed memory multiprocessor arranged in a hypercube topology architecture. The nodes are based on the Inmos T800 processors with 4 Mbytes of local memory. The simulation methodology is based on the interlaced alternating implicit integration scheme in which the network equations are re-ordered such that the network admittance matrix appears in the block bordered diagonal form and is then solved by a combined application of the LU factorization and the conjugate gradient method. The results obtained show considerable reduction in the simulation time.
机译:作者介绍了在并行计算机中采用电力系统动态仿真方法的并行实现进行瞬态稳定性分析的测试结果。该测试系统是互连的巴西东南部至东南部电力系统的计划配置,该系统具有616辆公交车,995条线路和88台发电机。计算机仿真中使用的并行机是按超立方体拓扑结构安排的分布式内存多处理器。这些节点基于具有4 MB本地内存的Inmos T800处理器。仿真方法基于隔行交替隐式积分方案,其中网络方程式重新排序,使得网络导纳矩阵以块状对角线形式出现,然后通过LU分解和共轭梯度的组合应用来求解方法。获得的结果表明,仿真时间大大减少。

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