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Optimal Capacity Allocation of Large-Scale Wind-PV-Battery Hybrid System

机译:大型风电池混合系统的最优容量分配

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Aiming at increasing the stability and economy of the wind photovoltaic (PV) battery hybrid system, this paper proposed the reasonable optimal capacity allocation model with the constraint conditions of the utilization for wind-solar resource, the system rated capacity and the discharge depth of the battery under a fixed coordinated operation strategy. And to solve the model by a kind of improved algorithm which takes differential local search with NSGA-II algorithm. The new algorithm improves the distribution of the optimal solutions. A simulation was conducted based on the wind PV battery hybrid system in Zhangbei, China. Results showed that the system can operated stably with a low operating cost.
机译:旨在提高风光光伏(PV)电池混合系统的稳定性和经济性,提出了合理的最佳能力分配模型,具有风力 - 太阳能资源利用的约束条件,系统额定容量和排放深度电池在固定协调的操作策略下。并通过一种用NSGA-II算法采用差分本地搜索的改进算法来解决模型。新算法可提高最佳解决方案的分布。基于张北,中国风电池混合动力系统进行了模拟。结果表明,该系统可以以低运营成本稳定运行。

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