太阳能光伏-柴油混合供电系统的比较研究

J. Adebisi, Prisca Ibili, Michael Emezirinwune, K. Abdulsalam
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引用次数: 1

摘要

在电力供应不稳定的环境中,持续的减载和不稳定的能源可用性仍然是一个主要挑战。因此,迫切需要一种替代能源来缓解这一挑战。多年来,以化石燃料为基础的能源一直被认为是一种有效的解决方案,然而,这些来源排放的温室气体在很大程度上加剧了臭氧层的消耗,最终导致污染和全球变暖。这项工作有助于减少柴油发电机的使用,更多地关注混合可再生能源系统,从而遏制这一威胁。本研究以选定的住宅建筑为个案研究对象。将光伏发电系统和柴油发电机作为混合能源系统,利用HOMER软件对采集到的数据进行处理。仿真结果提供了两种最优系统(PV-Diesel Generator,电池与完整的混合动力系统耦合)和(PV-Diesel Generator)。分析结果表明,最优且性价比最高的系统是PV-diesel混合动力系统。该系统由一个10kW太阳能光伏、45kW柴油发电机、一个10kW变流器和六块6FM200D电池组成。本研究提供了个别子系统的协同分析结果,以提高系统的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative Study of Hybrid Solar Photovoltaic - Diesel Power Supply System
In an environment with unstable power supply, incessant load shedding and inconsistent energy availability remains a major challenge. Hence, there is a need for an urgent alternative source of energy to mitigate this challenge. Over the years, fossil fuel-based energy sources have been considered as an effective solution, however the greenhouse gases emissions from these sources contribute largely to the rise in the depletion of the ozone layer which eventually leads to pollution and global warming. This work contributes to efforts in curbing this menace by reducing the use of diesel generators and focus more on a hybrid renewable energy system. This study, used selected residential buildings as a case study. A photovoltaic system and a diesel generator were incorporated as hybrid energy system, and the data gathered was processed using the HOMER software. The output of the simulation provided two optimal systems (PV-Diesel Generator, Battery coupled with the complete Hybrid system) and (PV- Diesel generator). The optimal and cost-effective system from the analysis is the PV-diesel hybrid system. This consists of a 10kW solar PV, 45kW Diesel generator, a 10kW converter and six 6FM200D batteries. This study provides a synergy of individual subsystems as analyzed in the result to enhanced the reliability of the system.
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