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Renewable rural electrification: Sustainability assessment of mini-hybrid off-grid technological systems in the African context

机译:可再生的农村电气化:非洲背景下的微型混合离网技术系统的可持续性评估

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The investigation summarised in this paper applied a sustainability assessment methodology on a renewable energy technological system in a rural village project that was commissioned by the South African Department of Minerals and Energy. The project comprised of wind, solar and lead-acid battery energy storage technologies that were implemented as a mini-hybrid off-grid electrification system for the village. The sustainability assessment methodology predicts the outcomes of such interventions by way of a learning model using discipline experts in the fields of economics, sociology, ecosystem sustainability, institutional governance, and the physics and chemistry of energy conversion processes. The comparison of the project's outcomes with a South African sustainable development framework shows that the specific village renewable off-grid electrification system is not viable. The main reason is that charges for electricity supply costs in village grids are too high for available subsidies; the economies of scale for renewable energy supply technologies favour national grids. The failure of the integrated system may also be attributable to the complexity of the social-institutional sub-system, which resulted in uncertainty for project planners and system designers, and the lack of resilience of the technological system to demands from the socio-economic and institutional sub-systems. Policy-related recommendations are made accordingly.
机译:本文概述的调查将可持续性评估方法应用于南非矿产和能源部委托的农村项目中的可再生能源技术系统。该项目包括风能,太阳能和铅酸电池储能技术,这些技术已作为该村的微型混合离网电气化系统实施。可持续性评估方法通过使用经济学,社会学,生态系统可持续性,机构治理以及能源转换过程的物理和化学领域的学科专家的学习模型来预测此类干预的结果。该项目成果与南非可持续发展框架的比较表明,特定的乡村可再生离网电气化系统不可行。主要原因是乡村电网的电力供应费用收费太高而无法获得补贴。可再生能源供应技术的规模经济有利于国家电网。集成系统的失败还可能归因于社会制度子系统的复杂性,这导致了项目计划人员和系统设计人员的不确定性,以及技术系统缺乏对社会经济和社会需求的弹性。制度子系统。相应地提出了与政策相关的建议。

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