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The Siting and Sizing Problem of Distributed Generation Based on a Novel Fractional Particle Swarm Optimization Algorithm

机译:基于新型分数粒子群优化算法的分布生成的选址与尺寸问题

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Large-scale distributed generation grid-connection brings huge economic and environmental benefits, but also threatens the stability of the grid. To make the grid consume a higher proportion of distributed generation, it is necessary to optimize the location and capacity of the distributed generation connected to the grid. Firstly, the uncertainty analysis model of wind speed, illumination intensity, and load of grid is established. Secondly, a distributed generation location and capacity planning model with the lowest annual comprehensive cost as the objective function is constructed. Then, a novel fractional particle swarm optimization algorithm is proposed, and the performance of the algorithm on complex optimization problems is tested. Finally, the simulation results of the IEEE 33-bus system example verify the rationality of the established model and the effectiveness of the proposed algorithm.
机译:大规模分布式发电网格连接带来了巨大的经济和环境效益,但也威胁到网格的稳定性。 为了使网格消耗更高比例的分布式发电,有必要优化连接到网格的分布式生成的位置和容量。 首先,建立了风速,照明强度和电网负荷的不确定性分析模型。 其次,构建了随着客观函数的年度综合成本最低的分布式发电位置和容量规划模型。 然后,提出了一种新颖的分数粒子群优化算法,测试了对复杂优化问题的算法的性能。 最后,IEEE 33-Bus系统示例的仿真结果验证了建立模型的合理性和所提出的算法的有效性。

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