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Parallel computing based distribution network reliability evaluation technology research

机译:基于并行计算的配电网可靠性评估技术研究

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With the development of social economy and the expansion of distribution network scale, the demand of power supply reliability is gradually improving. However, the traditional reliability analysis of distribution network power supply is more suitable for the simplified small-scale system, which is difficult to meet the reliability calculation task of large-scale distribution network in the data age. In this paper, an analysis method based on Spark parallel computing platform is proposed, and the system reliability analysis is relied on Map-Reduce. Firstly, hash mapping the network topology data to determine every element's connection. Then the minimum cut-sets is determined by depth first search of each load point by Map-Reduce, and the reliability index is calculated according to the series parallel relationship of the components. On this basis, correcting the reliability index of the system by considering the influence of standby power supply and distribution automation equipment in network. Finally, the reliability of 10kV distribution network in a certain area is realized on the Spark platform, and the calculation speed and accuracy of the algorithm are verified.
机译:随着社会经济的发展和配电网络规模的扩大,对供电可靠性的要求逐渐提高。但是,传统的配电网电源可靠性分析更适合于简化的小型系统,在数据时代很难满足大型配电网的可靠性计算任务。提出了一种基于Spark并行计算平台的分析方法,并基于Map-Reduce对系统进行了可靠性分析。首先,哈希映射网络拓扑数据以确定每个元素的连接。然后,通过Map-Reduce通过对每个载荷点进行深度优先搜索来确定最小割集,并根据组件的串联平行关系来计算可靠性指标。在此基础上,考虑网络中备用电源和配电自动化设备的影响,对系统的可靠性指标进行校正。最后,在Spark平台上实现了某地区10kV配电网的可靠性,并验证了算法的计算速度和准确性。

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