尺寸
微电网
可靠性工程
生命周期评估
可靠性(半导体)
一致性(知识库)
环境影响评价
计算机科学
风险分析(工程)
工程类
环境经济学
可再生能源
生产(经济)
功率(物理)
业务
经济
人工智能
视觉艺术
物理
电气工程
艺术
生物
量子力学
宏观经济学
生态学
作者
Iván Jiménez-Vargas,Juan M. Rey,Germán Osma-Pinto
标识
DOI:10.1016/j.renene.2022.11.103
摘要
The sizing of microgrids consists of determining the capacity of its main elements, ensuring financial, technical, reliability and environmental criteria. However, regarding the environmental impact, most of the literature addresses this evaluation by exclusively quantifying the emissions in the microgrid operation stage, which tends to underestimate the life cycle ecological cost of the microgrid’s elements. In this sense, this paper proposes a sizing approach that integrates the life cycle assessment of the implementation and operation stages by adapting a multi-objective function inspired by the well-known life cycle assessment methodology called ReCiPe. For this purpose, information from several sources was compiled and adapted to quantify different environmental impacts in the sizing formulation. A case study of a solar/wind/battery/diesel microgrid is presented, showing that calculating the environmental impact indicators considering only emissions in the operation leads to a value 54.60% lower than the proposed approach. It was also found that the underestimation of environmental indicators can lead to a selection of a more polluting microgrid sizing configuration, which remarks the relevance of an adequate environmental evaluation in the sizing procedure.
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