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Hybrid system energy management and supervision based on fuzzy logic approach for electricity production in remote areas

机译:基于模糊逻辑方法的偏远地区电力混合动力系统能源管理与监督

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The uncertainty of the renewable resources is a major impediment for successful implementation them for generation an electrical power to supply an isolated area. The combination of several renewable sources (wind and photovoltaic) with a diesel generator is suited to electricity supply of remote areas. The purpose of a hybrid power system is to produce energy at all times requested by consumers and if possible to produce it from renewable sources, the stochastic nature of renewable energy makes fluctuation of real power on the network therefore on the frequency. This problem can be solved or avoided by satisfying the real power supply-demand balance constraint in the hybrid energy system. Using battery bank system can increase the penetration of renewable energy and absorb the rapid fluctuation due to the stochastic nature of renewable energy, that, it increases the difficulty of managing all these systems in real time, ensuring the quality of energy supplied. The objective of this work is to propose a methodology to design a fuzzy logic controller coupling with stateflow to improve its performances.
机译:可再生资源的不确定性是成功实施可再生能源以产生电力以供应隔离区域的主要障碍。几种可再生能源(风能和光伏能)与柴油发电机的组合适合偏远地区的电力供应。混合动力系统的目的是在消费者要求的所有时间生产能源,并且如果可能的话,从可再生能源生产能源,可再生能源的随机性会使网络上的有功功率在频率上产生波动。通过满足混合能源系统中的实际电力供需平衡约束,可以解决或避免该问题。使用电池组系统可以提高可再生能源的渗透率,并吸收由于可再生能源的随机性而引起的快速波动,这增加了实时管理所有这些系统,确保所提供能源质量的难度。这项工作的目的是提出一种设计与状态流耦合的模糊逻辑控制器的方法,以改善其性能。

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