Research on Capacity Optimization Configuration of Hybrid AC/DC Microgrid Based on Wind, Solar and Storage

Hao Gao, M. Hou, Tianliang Huyan, Aijun Yin, Zhengkun Cao, Guangliang Chen
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引用次数: 1

Abstract

In a microgrid with multiple types of power sources, the distribution and capacity configuration of power sources will have a greater impact on the economics of the microgrid. Aiming at the grid-connected hybrid AC/DC microgrid of wind, solar, and storage, the power flow model with the goal of reducing the economic cost of the microgrid operation was established. Taking the self-balancing rate and converter loss of the microgrid as the evaluation indicators of the microgrid, a suitable operation control strategy is proposed. At the same time, using the actual data of a certain place, the genetic algorithm is used to optimize the solution, and the optimal scheme of its capacity configuration is given, which verifies the effectiveness of the control strategy proposed in this paper. The results show that increasing the battery capacity and coordinated configuration of wind turbines and photovoltaics can make the microgrid have better operating economy.
基于风能、太阳能和储能的交直流混合微电网容量优化配置研究
在具有多种电源类型的微电网中,电源的分布和容量配置将对微电网的经济性产生较大的影响。针对风电、太阳能、储能并网交/直流混合微电网,建立了以降低微电网运行经济成本为目标的潮流模型。以微网自平衡率和变流器损耗作为微网的评价指标,提出了合适的运行控制策略。同时,利用某地的实际数据,利用遗传算法对解进行优化,给出了其容量配置的最优方案,验证了本文提出的控制策略的有效性。研究结果表明,增加电池容量,协调配置风力发电机组和光伏发电机组,可以使微电网具有更好的运行经济性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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