Parallel Implementations of the Power System Transient Stability Problem on Clusters of Workstations

M. T. Bruggencate, S. Chalasani
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引用次数: 16

Abstract

Power system transient stability analysis computes the response of the rapidly changing electrical components of a power system to a sequence of large disturbances followed by operations to protect the system against the disturbances. Transient stability analysis involves repeatedly solving large, very sparse, time varying non-linear systems over thousands of time steps. In this paper, we present parallel implementations of the transient stability problem in which we use direct methods to solve the linearized systems. One method uses factorization and forward and backward substitution to solve the linear systems. Another method, known as the W-Matrix method, uses factorization and partitioning to increase the amount of parallelism during the solution phase. The third method, the Repeated Substitution method, uses factorization and computations which can be done ahead of time to further increase the amount of parallelism during the solution phase. We discuss the performance of the different methods implemented on a loosely coupled, heterogeneous network of workstations (NOW) and the SP2 cluster of workstations.
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电力系统暂态稳定问题在工作站集群上的并行实现
电力系统暂态稳定分析计算电力系统中快速变化的电气元件对一系列大扰动的响应,随后采取措施保护系统免受干扰。暂态稳定性分析涉及在数千个时间步长上反复求解大型、非常稀疏、时变的非线性系统。在本文中,我们提出了暂态稳定问题的并行实现,其中我们使用直接方法来求解线性化系统。一种方法是利用因式分解和前后代换来求解线性方程组。另一种方法,称为W-Matrix方法,使用因式分解和分区来增加求解阶段的并行性。第三种方法是重复代换法,它使用可提前完成的因式分解和计算来进一步增加求解阶段的并行性。我们讨论了在松散耦合的异构工作站网络(NOW)和SP2工作站集群上实现的不同方法的性能。
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