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A Comprehensive Approach to the Design of a Renewable Energy Microgrid for Rural Ethiopia: The Technical and Social Perspectives

机译:一种综合性埃塞俄比亚农村可再生能源微普线设计:技术和社会观点

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摘要

In view of Ethiopia’s significant renewable energy (RE) potential and the dynamic interactions among the components of the Water–Energy–Food (WEF) Nexus, we attempted to incorporate solar and small-scale hydropower into the optimal design of an environmentally friendly microgrid with the primary goal of ensuring the sustainability of irrigation water pumping, while taking advantage of existing infrastructure in various small administrative units (kebele). Any additional generated energy would be made available to the community for other needs, such as lighting and cooking, to support health and food security and improve the general quality of life. The novelty of the study stems from the utilization of in situ social data, retrieved during fieldwork interviews conducted in the kebele of interest, to ascertain the actual needs and habits of the local people. Based on these combined efforts, we were able to formulate a realistic energy demand plan for climatic conditions typical of Sub-Saharan Africa agricultural communities and analyze four different scenarios of the microgrid’s potential functionality and capital cost, given different tolerance levels of scheduled outages. We demonstrated that the RE-based microgrid would be socially and environmentally beneficial and its capital cost sensitive to the incorporation of individual or communal machines and appliances. Ultimately, the social impact investigation revealed the design would be welcomed by the local community, whose members already implement tailor-made solutions to support their agricultural activities. Finally, we argue that extended educational programs and unambiguous policies should be in place before any implementation to ensure the venture’s sustainability and functionality.
机译:鉴于埃塞俄比亚的显着可再生能源(RE)潜力和水能 - 食品(WEF)Nexus组件之间的动态相互作用,我们试图将太阳能和小规模水电纳入了环保友好微电网的最佳设计确保灌溉水泵可持续性的主要目标,同时利用各种小型行政单位(Kebele)的现有基础设施。任何额外的产生能量都可以提供给社区的其他需求,例如照明和烹饪,以支持健康和粮食安全,提高生活的一般质量。该研究的新颖性源于利用原位社会数据,在贝贝尔·贝尔对贝尔特进行的实地考察中检索,以确定当地人民的实际需求和习惯。基于这些综合的努力,我们能够制定一个切合实际的能源需求计划为典型的撒哈拉以南非洲农业社区的气候条件,分析了微电网的潜在功能和资本成本的四个不同的场景,给计划停机的不同耐受水平。我们证明,基于重新的微电网将是社会和环保的,其资本成本对个人或公共机器和器具的融合敏感。最终,社会影响调查显示,该设计将由当地社区欢迎,其成员已经实施量身定制的解决方案来支持其农业活动。最后,我们争辩说,在任何实施之前,应该在任何实施之前到达延长的教育计划和明确的政策,以确保风险投资的可持续性和功能。

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