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Reliability assessment of power distribution systems using disjoint path-set algorithm

机译:使用不相交路径集算法的配电系统可靠性评估

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Finding the reliability expression of different substation configurations can help design a distribution system with the best overall reliability. This paper presents a computerized and implemented algorithm, based on Disjoint Sum of Product (DSOP) algorithm. The algorithm was synthesized and applied for the first time to the determination of reliability expression of a substation to determine reliability indices and costs of different substation arrangements. It deals with the implementation and synthesis of a new designed algorithm for DSOP implemented using C/C++, incorporating parallel problem solving capability and overcoming the disadvantage of Monte Carlo simulation which is the lengthy computational time to achieve satisfactory statistical convergence of reliability index values. The major highlight of this research being that the time consuming procedures of the DSOP solution generated for different substation arrangements using the proposed method is found to be significantly lower in comparison with the time consuming procedures of Monte Carlo-simulation solution or any other method used for the reliability evaluation of substations in the existing literature such as meta-heuristic and soft computing algorithms. This implementation gives the possibility of RBD simulation for different substation configurations in C/C++ using their path-set Boolean expressions mapped to probabilistic domain and result in simplest Sum of Disjoint Product which is on a one-to-one correspondence with reliability expression. This software tool is capable of handling and modeling a large, repairable system. Additionally, through its intuitive interface it can be easily used for industrial and commercial power systems. With simple Boolean expression for a configuration’s RBD inputted, users can define a power system utilizing a RBD and, through a fast and efficient built-in simulation engine, the required reliability expressions and indices can be obtained. Two case studies will be analyzed in this paper. The effects of different substation configurations on the reliability are analyzed and compared. Then, the reliability of a radial distribution system will be evaluated using DSOP solution. The failure results will be combined with a load flow scenario, and indices such as SAIDI, SAIFI will be determined.
机译:查找不同变电站配置的可靠性表示可以帮助设计具有最佳整体可靠性的配电系统。本文提出了一种基于不相乘积和(DSOP)算法的计算机化实现算法。该算法被合成并首次应用于变电站的可靠性表达式的确定,以确定不同变电站布置的可靠性指标和成本。它处理了使用C / C ++实现的DSOP新设计算法的实现和综合,它具有并行解决问题的能力,并克服了蒙特卡洛模拟的缺点,即蒙特卡洛模拟需要较长的计算时间才能达到令人满意的可靠性指标值的统计收敛。这项研究的主要亮点是,与使用蒙特卡罗模拟解决方案或任何其他方法的耗时过程相比,发现使用所提出的方法为不同变电站布置生成的DSOP解决方案的耗时过程要低得多。现有文献中对变电站的可靠性评估,如元启发式算法和软计算算法。这种实现方式使C / C ++中的不同变电站配置使用映射到概率域的路径集布尔表达式进行RBD仿真成为可能,并导致最简单的不相乘积总和与可靠性表达式一一对应。该软件工具能够处理和建模大型可修复系统。此外,通过其直观的界面,它可以轻松用于工业和商业电源系统。通过为配置的RBD输入简单的布尔表达式,用户可以使用RBD定义电力系统,并且通过快速高效的内置仿真引擎,可以获得所需的可靠性表达式和指标。本文将分析两个案例研究。分析并比较了不同变电站配置对可靠性的影响。然后,将使用DSOP解决方案评估径向分配系统的可靠性。故障结果将与潮流情况结合在一起,并确定诸如SAIDI,SAIFI之类的指标。

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