多变量可再生能源分布式电网的智能重构

Yuqiong Zhang, Jiale Liu, Huizhi Zhou, Ke Guo, Fei Tang
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引用次数: 3

摘要

多种类型的可再生分布式发电接入配电网,给电力系统带来了随机性,对配电网的电压稳定性和损耗产生影响。然而,传统的配电规划方法不能同时考虑不同负荷水平下的RDG容量和安装位置。本文提出了一种烟花优化算法,以同时获得最小网损(有功损耗)和最大电压支撑效果的径向配电系统最优重构。该算法可以重构网络,并将不同RDG容量和安装地点纳入整体规划。首先,考虑RDG的不确定性,建立了风电和光伏电池的数学概率模型;其次,将加入不同RDG容量和位置的网络交换机组合作为引入烟花算法的变量。在考虑各种RDG运行场景和不同负荷水平的情况下,最终可通过该算法搜索到最优配电系统结构中RDG的最优规模和位置。在pe&g 69总线系统中的仿真结果表明,该方法能够满足稳定运行的约束条件。通过只考虑RDG容量和只考虑RDG位置的规划对比,很好地验证了其经济优势。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Intelligent Reconfiguration for Distributed Power Network with Multivariable Renewable Generation
Multiple types of renewable distributed generation (RDG) connecting to the distribution network brings randomness to power system, which have effects on voltage stability and losses of distribution system. However, the traditional distribution planning methods cannot give consideration to both RDG capacity and installation position under various load levels. This paper proposed a fireworks optimization algorithm to obtain optimal reconfiguration of radial distribution systems with the smallest network loss (active power loss) and the maximum voltage support effect simultaneously. This algorithm can reconstruct the network and take the different RDG capacities and installation sites into overall plan. Firstly, the mathematical probability models on wind power and photovoltaic cell are established in order to consider the uncertainty of RDG. Secondly, the network switch combination added with different RDG capacities and locations are regarded as variables introduced into the fireworks algorithm. Under the consideration of various RDG operation scenarios and different load levels, the optimal sizes and positions of RDG in optimal distribution system structure can be searched by the algorithm finally. The simulation results in PE& G 69-bus system indicate the proposed method can satisfy the constraints of stable operation. In comparison of the planning only consider RDG capacities or just RDG positions, its economical superiority is well verified.
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