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首页> 外文期刊>Energy Conversion & Management >Techno-economic optimization and environmental Life Cycle Assessment (LCA) of microgrids located in the US using genetic algorithm
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Techno-economic optimization and environmental Life Cycle Assessment (LCA) of microgrids located in the US using genetic algorithm

机译:利用遗传算法对位于美国的微电网进行技术经济优化和环境生命周期评估(LCA)

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摘要

A methodology was developed that assessed the techno-economic and environmental performance of a small scale microgrid located in US cities of Tucson, Lubbock and Dickinson. Providing uninterrupted power the microgrid was composed of seven components - solar photovoltaics, wind-turbines, lead acid batteries, biodiesel generators, fuel cells, electrolyzers and H-2 tanks. Firstly, detailed mathematical models that predicted the hourly energy generation for each of the components were developed and validated. Secondly, based on an electricity dispatch strategy, configurations having lowest LCOE (Levelized Cost of Energy) were determined using an evolutionary optimization technique - Genetic Algorithm (GA). Results for a single home microgrid were verified using an exhaustive search technique that scanned the entire design space to find the lowest LCOE configuration. The microgrid size was subsequently increased to satisfy power requirements for 10 and 50 homes and new lowest LCOE configurations were determined using GA to examine the economies of scale effect on sustain ability. The LCOEs obtained were in the range of $0.32-0.42/kWh and were also compared with similar economic analyses available in the literature. The carbon footprint (LCA GHG emissions - CO2 eq.) was extremely low and was approximately 1/10th as that of an equivalent conventional electric grid.
机译:开发了一种方法来评估位于美国图森,拉伯克和狄金森等城市的小型微电网的技术经济和环境绩效。提供不间断电源的微电网由七个组件组成-太阳能光伏,风力涡轮机,铅酸电池,生物柴油发电机,燃料电池,电解池和H-2储罐。首先,开发并验证了预测每个组件每小时发电量的详细数学模型。其次,基于电力调度策略,使用进化优化技术-遗传算法(GA)确定具有最低LCOE(能源平均成本)的配置。使用详尽的搜索技术验证了单个家用微电网的结果,该技术扫描了整个设计空间以找到最低的LCOE配置。随后增加了微电网的大小,以满足10和50户家庭的用电需求,并使用GA确定了最低的最低LCOE配置,以检查规模经济对维持能力的影响。获得的LCOE在$ 0.32-0.42 / kWh的范围内,并且还与文献中提供的类似经济分析进行了比较。碳足迹(LCA温室气体排放量-CO2当量)极低,约为等效传统电网的1/10。

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