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Stochastic Optimal Power Flow Applied in Day-Ahead Planning of Isolated Microgrids

机译:随机最佳功率流动应用于孤立的微电网的日期规划

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Due to the growing demand for energy in the last decades, the electric power system has been facing challenges to supply the power consumed by population. In this sense, isolated microgrids have emerged as a viable alternative based on the use of local energy resources to feed hard to reach areas. In this context, this paper develops a day-ahead energy based on optimal power flow for an isolated microgrid in Brazil equipped with storage system, backup generation and renewable resources. The renewable resource available in the studied microgrid is the photovoltaic solar energy, which presents an intermittent behavior, and so it is modeled by a probability density function in the proposed OPF formulation. The storage system represents approximately 52% of the total microgrid investment. Considering that, the objective function of the OPF incorporates the costs associated to the life cycle of the storage system and the fuel consumption with the backup generation, as well as, a stochastic model to estimate the costs of the photovoltaic solar energy. The proposed formulation was solved using Differential Evolution algorithm to obtain a minimal generation cost considering the load profile of a typical day.
机译:由于能源在过去几十年的需求日益增长,电力系统一直面临的挑战提供人口消耗的功率。在这个意义上,微电网孤立已成为基础上,利用当地能源资源的一种可行的替代饲料难以到达的区域。在这方面,本文开发了基于在巴西的分离的微电网配备有存储系统,备份生成和可再生资源的最佳功率流提前一天能量。在所研究的微电网可用的可再生资源是光伏太阳能,其中介绍的间歇行为,所以它是由所提出的OPF制剂的概率密度函数来建模。存储系统表示总微电网投资的大约52%。考虑到,在OPF的目标函数结合相关联的存储系统,并与备份生成燃料消耗的生命周期的费用,以及,一个随机模型以估计光伏太阳能的成本。建议的配方使用差分进化算法获得考虑一个典型的一天的负荷曲线最小发电成本解决。

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