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Capacity optimization of Distributed Generation for Stand-alone Microgrid Considering Hybrid Energy Storage Systems

机译:考虑混合储能系统的单机微电网分布式发电容量优化

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Capacity configuration of distributed generation is an important aspect in the microgrid planning and design stage. The pros and cons of capacity configuration of distributed generation will directly affect the economy of microgrid, reliability of power supply, and environmental effect. Since the power-type energy storage system(PTESS) such as supercapacitor and flywheel energy storage cannot be optimally configured over a long-time scale, the integrated configuration including wind power, photovoltaic system, diesel generator, and hybrid energy storage system(HESS) becomes difficult. To solve this problem, this paper proposes a two-stage configuration model for stand-alone microgrid considering dual time scales: the first stage is the hour time scale optimization configuration, which can solve the configuration results of PV-Wind-Diesel-Battery; the second stage optimal configuration is the time scale of second level, which can solve the configuration results of “power-type energy storage” based on the result of the first stage model.
机译:分布式发电的容量配置是微电网规划和设计阶段的重要方面。分布式发电容量配置的优劣将直接影响微电网的经济性,供电的可靠性以及环境影响。由于无法长期最佳配置超级电容器和飞轮储能等动力式储能系统(PTESS),因此,包括风能,光伏系统,柴油发电机和混合储能系统(HESS)在内的集成配置变得困难。为了解决这个问题,本文提出了一种考虑双时标的独立微电网两阶段配置模型:第一阶段是小时时标优化配置,可以解决PV-Wind-Diesel-Battery的配置结果;第二阶段的最优配置是第二级的时间尺度,它可以根据第一阶段模型的结果来求解“功率型储能”的配置结果。

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