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Technical-ecological optimization of the operation of a multi-source electrical system injecting into a distribution network using homer software and genetic algorithms

机译:使用Homer软件和遗传算法对注入配电网的多源电气系统的运行进行技术生态优化

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This work consisted in positioning and sizing a photovoltaic solar power plant with or without storage in an existing hybrid system consisting of a Diesel power plant, a hydroelectric power plant and an infinite network. Genetic algorithms and Homer software inspire the tools used. The objectives of this study are the minimization of losses, voltage deviations, greenhouse gases and the cost of energy distributed to the customer. From this study, it emerges that the optimal hybrid system is that consisting of 2.11 MW photovoltaic (1.71 MW at node 169 and 0.4 MW at node 110), 1 MW hydroelectricity, 4 MW Diesel and 1 MW Network. Greenhouse gas emissions have improved by 20.96% and the cost of hybrid energy has dropped from 166 FCFA to 120 FCFA, a decrease of 28.75%.
机译:这项工作包括在现有的混合动力系统(包括柴油发电厂,水力发电厂和无限网络)中对有或没有存储的光伏太阳能发电厂进行定位和调整大小。遗传算法和Homer软件启发了所使用的工具。这项研究的目的是使损耗,电压偏差,温室气体和分配给客户的能源成本最小化。从这项研究中可以看出,最佳的混合系统是由2.11兆瓦的光伏发电(节点169处为1.71兆瓦,节点110处为0.4兆瓦),1兆瓦水电,4兆瓦柴油和1兆瓦网络组成的。温室气体排放量增加了20.96%,混合能源的成本从166 FCFA下降到120 FCFA,下降了28.75%。

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