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Techno-Economic and Environmental Analysis of a Hybrid PV-WT-PSH/BB Standalone System Supplying Various Loads

机译:一种提供各种负载的混合PV-WT-PSH / BB独立系统的技术经济和环境分析

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摘要

The Algerian power system is currently dominated by conventional (gas- and oil-fueled) power stations. A small portion of the electrical demand is covered by renewable energy sources. This work is intended to analyze two configurations of renewables-based hybrid (solar⁻wind) power stations. One configuration was equipped with batteries and the second with pumped-storage hydroelectricity as two means of overcoming: the stochastic nature of the two renewable generators and resulting mismatch between demand and supply. To perform this analysis, real hourly load data for eight different electricity consumers were obtained for the area of Mostaganem. The configuration of hybrid power stations was determined for a bi-objective optimization problem (minimization of electricity cost and maximization of reliability) based on a multi-objective grey-wolf optimizer. The results of this analysis indicate that, in the case of Algeria, renewables-based power generation is still more expensive than electricity produced from the national grid. However, using renewables reduces the overall CO2 emissions up to 9.3 times compared to the current emissions from the Algerian power system. Further analysis shows that the system performance may benefit from load aggregation.
机译:阿尔及利亚电力系统目前主要由常规(气体和油气)发电站主导。可再生能源涵盖了一小部分电气需求。这项工作旨在分析基于可再生能源的混合动力(Solaržwind)发电站的两种配置。一种配置配有电池和第二个配置,作为泵送储存的水电,作为两种克服的手段:两个可再生发电机的随机性质,并导致需求和供应之间的不匹配。为了进行这种分析,获得了八种不同电力消费者的实时加载数据,为莫斯诺姆的面积获得。基于多目标灰狼优化器确定了用于双目标优化问题的混合动力站的配置(最小化电力成本和可靠性最大化)。该分析的结果表明,在阿尔及利亚的情况下,可再生能源的发电仍然比来自国家电网产生的电力更昂贵。但是,与来自阿尔及利亚电力系统的电流排放相比,使用可再生能源将整体二氧化碳排放量减少至9.3倍。进一步的分析表明,系统性能可能受益于负载聚合。

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