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具有柴油弹性的光伏-电池优先并网系统的可行性与技术经济分析:案例研究

Feasibility and techno-economic analysis of PV-battery priority grid tie system with diesel resilience: A case study.

作者信息

Aeggegn Dessalegn Bitew, Agajie Takele Ferede, Workie Yalew Gebru, Khan Baseem, Fopah-Lele Armand

机构信息

School of Electrical and Computer Engineering, Debre Markos Institute of Technology, Debre Markos, Ethiopia.

Department of Electrical and Electronic Engineering, Faculty of Engineering and Technology, University of Buea, PO.Box. 63, Buea, Cameroon.

出版信息

Heliyon. 2023 Aug 24;9(9):e19387. doi: 10.1016/j.heliyon.2023.e19387. eCollection 2023 Sep.

Abstract

Ethiopia is close to the equator and has enormous potential as a solar energy resource that has yet to be realized. The country has some small-scale diesel-based power generation, and all universities and government agencies have installed standby generator sets for supplying power when the grid is interrupted. Ethiopia is a developing nation with a significant reliance on oil imports and insufficient rural electrification, which exacerbates the problem of poverty. The increased cost of oil, frequent hard currency expenditures for oil, and exaggerated maintenance costs for the generators are the main reasons to undertake this feasibility study. As the assessments show, the annual average interruption was more than 800 h in the past five years in the Debre Markos University distribution feeder. A preliminary study on the techno-economic feasibility of the existing diesel generator set and PV system with the same rated power of 500 kW is conducted in this work. As the break-even point of the economic comparison shows, the existing diesel generator is not economically feasible as compared to the proposed PV-battery priority grid tie system due to high running and service costs. The study also shows the technical feasibility of solar energy, as the -V and I-V characteristic curves illustrated on a single standard solar module indicate. As the economic comparison break-even point shows, the diesel-based generator set is not economical after 5 years due to the high operational and maintenance costs. As the results show, the proposed PV/Battery Priority system with a diesel generator for resilience is more environmentally friendly, reducing the carbon footprint by 94%.

摘要

埃塞俄比亚靠近赤道,作为太阳能资源具有巨大潜力,但尚未得到充分开发。该国拥有一些小型柴油发电设施,所有大学和政府机构都安装了备用发电机组,以便在电网中断时供电。埃塞俄比亚是一个发展中国家,严重依赖石油进口,农村电气化不足,这加剧了贫困问题。石油成本上升、频繁的石油硬通货支出以及发电机过高的维护成本是开展这项可行性研究的主要原因。评估显示,在过去五年中,德布雷马科斯大学配电馈线的年平均停电时间超过800小时。本研究对额定功率均为500千瓦的现有柴油发电机组和光伏系统进行了技术经济可行性初步研究。经济比较的盈亏平衡点表明,与提议的光伏-电池优先并网系统相比,现有柴油发电机由于运行和维护成本高,在经济上不可行。研究还表明了太阳能的技术可行性,正如单个标准太阳能模块上所示的-V和I-V特性曲线所表明的那样。经济比较盈亏平衡点表明,基于柴油的发电机组由于运营和维护成本高,5年后不经济。结果表明,提议的带有柴油发电机以提高弹性的光伏/电池优先系统更环保,可将碳足迹减少94%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c3c/10472061/02ec34bef411/ga1.jpg

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