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Integrated design of photovoltaic power generation plant with pumped hydro storage system and agricultural facilities in Uhuelem-Amoncha African community

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dc.creator ONU, Uchenna Godswill
dc.date.issued 2022-11-29
dc.identifier.uri https://repositorio.unifei.edu.br/jspui/handle/123456789/3433
dc.description.abstract Seasonal and location dependence of renewable energy resources have limited their applications in power generation. Energy storage systems are promising solutions to the intermittence of renewable energy resources. Rural electricity grids are faced with economic sustainability challenges due to low power demand and poverty. As countries hopefully pass through various stages of development, their needs change. The electricity needs of developing countries surely differ from those of developed economies. Most of the global population without access to electricity, and all the consequences of it, is found in developing countries. Energy access is undoubtedly a significant catalyst for development. Developed countries mainly require technologies to ensure energy security, resilience, and occasionally emission control. Therefore, microgrids are emerging technologies capable of supporting the diverse needs of various stages of development. For example, a rural grid design around economic drivers like agriculture and micro industries can mitigate poverty and improve economic sustainability of rural grids. This study presents an Integrated Design of Photovoltaic Power Generation Plant with Pumped Hydro Storage System and Agricultural Facilities in Uhuelem-Amoncha African Community. The design explored the natural availability of water body in an elevated settlement area that offers a natural storage height for hydro energy storage. HOMER (Hybrid Optimization of Multiple Energy Resources) software was deployed to optimize the design. The designed photovoltaic power generation plant has a nominal capacity of 221 kW. The simulated results show the power supply probability of the plant as 99.9%. The cost of energy (COE) offered by the design is 0.456 [US$/kWh] which is 82% lower than the current cost of energy in the project community based on generation through petrol generators. The System has 100% renewable energy penetration. The plant is designed to power 50 households with a daily domestic energy consumption of 4.46 [kWh] each. The plant capacity also covers the irrigation water requirement of 50 acres of corn farms. A total of 100 units of designed intelligent pest control system will also be powered by the plant. A community refrigeration scheme of 27 [m3] equivalent volume is part of the plant design load. The benefits from the irrigation, water supply, pest control and refrigeration scheme will enhance the community’s socio-economic development and sustain the investment. Quantifying the integral socio-economic and environmental benefits is a subject of a future research. pt_BR
dc.language eng pt_BR
dc.publisher Universidade Federal de Itajubá pt_BR
dc.rights Acesso Aberto pt_BR
dc.subject Geração fotovoltaica pt_BR
dc.subject Armazenamento de energia hidrelétrica bombeada pt_BR
dc.subject Instalação comunitária agrícola pt_BR
dc.subject Pobreza energética pt_BR
dc.subject Sustentabilidade pt_BR
dc.subject Microrredes pt_BR
dc.subject HOMER pt_BR
dc.title Integrated design of photovoltaic power generation plant with pumped hydro storage system and agricultural facilities in Uhuelem-Amoncha African community pt_BR
dc.type Dissertação pt_BR
dc.date.available 2022-11-29
dc.date.available 2022-11-29T16:21:04Z
dc.date.accessioned 2022-11-29T16:21:04Z
dc.creator.Lattes http://lattes.cnpq.br/0535868744289829 pt_BR
dc.contributor.advisor1 ZAMBRONI, Antônio Carlos
dc.contributor.advisor1Lattes http://lattes.cnpq.br/4860175234818683 pt_BR
dc.contributor.advisor-co1 BONATTO, Benedito Donizeti
dc.contributor.advisor-co1Lattes http://lattes.cnpq.br/8344250043719538 pt_BR
dc.publisher.country Brasil pt_BR
dc.publisher.department IESTI - Instituto de Engenharia de Sistemas e Tecnologia da Informação pt_BR
dc.publisher.program Programa de Pós-Graduação: Mestrado - Engenharia Elétrica pt_BR
dc.publisher.initials UNIFEI pt_BR
dc.subject.cnpq CNPQ::ENGENHARIAS::ENGENHARIA ELÉTRICA::SISTEMAS ELÉTRICOS DE POTÊNCIA pt_BR
dc.relation.references ONU, Uchenna Godswill. Integrated design of photovoltaic power generation plant with pumped hydro storage system and agricultural facilities in Uhuelem-Amoncha African community. 2022. 100 f. Dissertação (Mestrado em Engenharia Elétrica) – Universidade Federal de Itajubá, Itajubá, 2022. pt_BR


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