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Optimization of Network Configuration in Large Distribution Systems Using Plant Growth Simulation Algorithm

机译:基于植物生长模拟算法的大型配电系统网络配置优化

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摘要

Optimization of network configuration involving the switch statuses is important for the operation in the distribution system. This paper presents a network configuration optimization approach based on the plant growth simulation algorithm (PGSA), which is specially suited to large-scale distribution systems. An elegant design method of the decision variables, which describes the radial feature of the distribution network and considerably reduces the dimension of the variables in the solved model, is developed. Moreover, a detailed description on switch states further improves the efficiency of calculation. The main advantage of the proposed approach in relation to previously published random algorithms is that it does not require any external parameters such as barrier factors, crossover rate, mutation rate, etc. These parameters are hard to be effectively determined in advance and affect the searching performance of the algorithm. The proposed approach is applied to a 33-bus sample system and a large-scale real system. The best solutions of the two systems, which were published in the technical literature, have been found in shorter time than the existing random algorithms. The numerical results demonstrate well the validity and effectiveness of the proposed approach.
机译:涉及交换机状态的网络配置的优化对于配电系统中的操作很重要。本文提出了一种基于植物生长模拟算法(PGSA)的网络配置优化方法,该方法特别适合于大型配电系统。开发了一种优雅的决策变量设计方法,该方法描述了配电网络的径向特征,并大大减小了求解模型中变量的维数。此外,对开关状态的详细描述进一步提高了计算效率。相对于先前发布的随机算法,该方法的主要优点是它不需要任何外部参数,例如障碍因子,交叉率,变异率等。这些参数很难预先有效地确定,并且会影响搜索算法的性能。所提出的方法适用于33总线采样系统和大规模实际系统。与现有的随机算法相比,在更短的时间内发现了在技术文献中公开的两种系统的最佳解决方案。数值结果很好地证明了该方法的有效性。

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