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Comparison of various approaches to design wind-PV rural electrification projects in remote areas of developing countries

机译:发展中国家偏远地区设计风电-光伏农村电气化项目的各种方法的比较

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摘要

Nowadays, around 1.1 billion people in rural and remote areas of developing countries remain without electricity. Stand-alone projects that combine the wind and photovoltaic generation technologies as well as microgrids and individual supplies for the distribution network are an adequate strategy to reach such isolated regions. However, the design of electrification projects is complex, having to define the best combination of generation and distribution technologies, under a challenging social context and tight technoeconomic resources. In order to ease decision-making, several tools have been developed in the literature and are here reviewed, grouped into three main categories: optimization processes, aiming to minimize project costs subject to technical constraints, through exact or heuristic algorithms; multicriteria processes, using different methods to select the best among a set of predefined scenarios according to economic, technical, social, and environmental criteria; and systematized tools, that have been developed to provide user-friendly interface for their larger dissemination in different regions and contexts. Hence, this paper aims to provide researchers and practitioners an analysis of the advantages and limitations of approaches used over the last decade when addressing the designing of wind and/or photovoltaic electrification projects for extremely poor and isolated areas in developing countries, as well as some areas for further research. This article is categorized under: Concentrating Solar Power > Systems and Infrastructure Photovoltaics > Systems and Infrastructure Wind Power > Systems and Infrastructure Energy Infrastructure > Economics and Policy
机译:如今,发展中国家农村和偏远地区约有11亿人口仍然没有电。结合了风力发电和光伏发电技术以及微电网和配电网单个电源的独立项目是到达此类偏远地区的适当策略。但是,电气化项目的设计很复杂,必须在充满挑战的社会环境和紧缩的技术经济资源下确定发电和配电技术的最佳组合。为了简化决策,文献中已经开发了几种工具,在此进行了综述,分为三大类:优化过程,旨在通过精确算法或启发式算法使受技术限制的项目成本最小化;多标准流程,使用不同的方法根据经济,技术,社会和环境标准在一组预定义的方案中选择最佳方案;和系统化的工具,旨在为它们在不同地区和环境中的更大范围的传播提供用户友好的界面。因此,本文旨在为研究人员和从业人员分析过去十年在解决发展中国家极度贫困和偏远地区以及某些地区的风力和/或光伏电气化项目的设计时所使用方法的优点和局限性。需要进一步研究的领域。本文归类为:集中太阳能>系统和基础设施光伏>系统和基础设施风力发电>系统和基础设施能源基础设施>经济和政策

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