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Parallel implementation of power system transient stability analysis

机译:电力系统暂态稳定分析的并行实现

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Power system transient stability analysis (TSA) is computationally intensive and the need for its online use has spurred much research in finding faster solution methods, more recently by using parallel computers. Research in parallel algorithms has shown that the TSA solution can be made faster by about a magnitude. However, using new algorithms for TSA implies major modifications, or even the complete rewriting, of existing TSA production grade programs in which significant effort has been invested over the years. This paper shows how the most well-known and fastest sequential algorithm used by many production grade programs can be parallelized and then easily implemented. Such implementation, first on an university research grade program and then on a production grade program that is in daily industrial use, demonstrates that almost a magnitude speedup can be obtained not only in theory, but in real practice.
机译:电力系统暂态稳定性分析(TSA)的计算量很大,在线使用的需求促使人们在寻找更快的解决方法方面进行了大量研究,最近更是使用并行计算机。并行算法的研究表明,TSA解决方案的速度可以提高大约一个数量级。但是,对TSA使用新的算法意味着对现有的TSA生产级程序进行重大修改,甚至完全重写,这是多年来投入了大量精力的。本文说明了如何将许多生产级程序使用的最著名,最快的顺序算法并行化,然后轻松实现。这种实现方式首先是在大学研究级计划上,然后是在日常工业应用中的生产级计划上,证明了不仅在理论上,而且在实际实践中,几乎都可以实现幅度上的提高。

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