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Voltage stability based contingency ranking using distributed computing environment

机译:基于电压稳定性的争论环境使用分布式计算环境排名

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In recent years, voltage instability has been responsible for several incidents of major voltage collapses. For stable operation of power system, fast and accurate contingency analysis is required. Voltage stability contingency analysis requires computation of voltage stability margin accurately for each contingency case. This approach is time consuming, particularly in practical power systems where the number of contingencies is very large. This paper proposes a fast and accurate method for contingency ranking using distributed computing. In distributed computing, different parts of a program or the same program may be executed simultaneously on group of computers, which are communicating with each other over a network. The generalpurpose computers that are networked can be utilized for distributed computing purpose. The effectiveness of the proposed approach has been tested on IEEE 30-bus system. The proposed distributed computing based approach for contingency ranking is found to be computationally efficient and provides near linear speedups.
机译:近年来,电压不稳定性对多个重大电压崩溃的若干事件负责。为了稳定运行电力系统,需要快速准确的应急分析。电压稳定性应急分析需要为每个患病案件准确地计算电压稳定性裕度。这种方法是耗时的,特别是在偶然数量非常大的实际电力系统中。本文提出了一种使用分布式计算的快速准确和准确的偶然排序方法。在分布式计算中,可以在一组计算机上同时执行程序或相同程序的不同部分,这些计算机通过网络彼此通信。网络化的通用计算机可以用于分布式计算目的。在IEEE 30-Bus系统上测试了该方法的有效性。发现基于分布式计算的应急排名方法是计算效率和提供近线性加速度。

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