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Economic analysis of a stand-alone residential solar PV system for a typical South African middle income household

机译:典型南非中非收入家庭独立住宅太阳能光伏系统经济分析

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Residential solar photovoltaic power generation systems are becoming increasingly popular now-a-days in South Africa with more and more customers now installing photovoltaic (PV) systems in order to power their homes. This paper presents the modeling and economic analysis of a small scale solar PV power generation system aimed to supply middle income residential customers. The modeling is done using the Hybrid Optimization Model for Electric Renewable (HOMER, version 2.68) software, considering the latitude and longitude of Cape Town as the South African customer base location in order to gather and generate solar irradiance data. The system design components such as photovoltaic (PV) array, the battery bank, converter, and AC load are considered, and component specifications (size, capital costs, replacement costs, etc.) are included and specified in HOMER to generate the PV system model. Three different cases considering the maximum annual capacity shortage of 0%, 5% and 10% are presented and compared against different technical and economic parameters detailed in the paper.
机译:住宅太阳能光伏发电系统现在越来越受欢迎,在南非的日子里,越来越多的客户现在安装光伏(PV)系统,以便为家庭供电。本文介绍了旨在供应中等收入住宅客户的小规模太阳能光伏发电系统的建模和经济分析。使用电动可再生(HOMER,2.68)软件的混合优化模型进行建模,考虑到开普敦作为南非客户群地理位置的纬度和经度,以收集和生成太阳辐照度数据。诸如光伏(PV)阵列,电池组,转换器和交流负载的系统设计部件,以及组件规格(大小,资本成本,更换成本等),并在本垒打中指定以产生光伏系统模型。三种不同的案例考虑最高年度容量短缺0%,5%和10%,并与本文详述的不同技术和经济参数进行比较。

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