电网大规模事故分析的高性能混合计算方法

I. Gorton, Zhenyu Huang, Yousu Chen, Benson Kalahar, Shuangshuang Jin, D. Chavarría-Miranda, Douglas J. Baxter, J. Feo
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引用次数: 55

摘要

运行电网以防止停电是一项复杂的任务。其中一个重要方面是应急分析,它涉及了解和减轻电网元件(如输电线路)的潜在故障。当考虑到多个同时发生故障的可能性(称为N-x偶然性问题)时,偶然性分析成为一项大量计算任务。本文描述了一种新的权变分析混合计算方法。这种方法利用Cray XMT独特的图形处理性能,结合传统的大规模并行计算集群来识别可能同时发生的故障,这些故障可能导致广泛的级联电源故障,对社会产生巨大的经济和社会影响。该方法有可能为N-x偶然性问题提供第一个实用且可扩展的解决方案。当部署在电网运行中时,它将提高电网运营商有效处理电网组件中断和故障的能力,同时保持电网的稳定和安全运行。本文描述了我们的解决方案的体系结构,并给出了验证我们方法有效性的初步性能结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A High-Performance Hybrid Computing Approach to Massive Contingency Analysis in the Power Grid
Operating the electrical power grid to prevent power black-outs is a complex task. An important aspect of this is contingency analysis, which involves understanding and mitigating potential failures in power grid elements such as transmission lines. When taking into account the potential for multiple simultaneous failures (known as the N-x contingency problem), contingency analysis becomes a massively computational task. In this paper we describe a novel hybrid computational approach to contingency analysis. This approach exploits the unique graph processing performance of the Cray XMT in conjunction with a conventional massively parallel compute cluster to identify likely simultaneous failures that could cause widespread cascading power failures that have massive economic and social impact on society. The approach has the potential to provide the first practical and scalable solution to the N-x contingency problem. When deployed in power grid operations, it will increase the grid operator’s ability to deal effectively with outages and failures with power grid components while preserving stable and safe operation of the grid. The paper describes the architecture of our solution and presents preliminary performance results that validate the efficacy of our approach.
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