Developing a small photovoltaic power supply system with adaptive technologies for rural Africa: Design, cost and efficiency analyses

IF 0.6 4区 工程技术 Q4 ENERGY & FUELS
Steve Mvili-Gampio, L. Snyman
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引用次数: 2

Abstract

The objective of this study was to design a small-scale photovoltaic system to support electricity supply to a rural village in the Republic of Congo. A simple impedance-matching system and an innovative panel-tilting system were implemented as adaptive technologies to increase the power output of the system and reduce its capital and running costs. The experimentally obtained results showed that the daily energy output of a four-panel, 400 W photovoltaic system could be increased by 15% through a series parallel impedance match configuration, and by 36% from 3.3 kWh per day to approximately 4.5 kWh per day through implementing an automated panel tilting system with always normal incidence of solar irradiation on the panels in an equatorial environment. Implementing these technologies accordingly reduced the cost of energy supplied by the same percentages, with an eventual electricity cost of about ZAR 3.60 per kWhr, as calculated over an operation time of ten years, and an initial capital outlay of ZAR 37 per watt. These costs are much lower than for installing power grid lines to the village, and the technology also ensures complete autonomy of power supply to the community. The study also identified the potential to generate many new business and job opportunities locally in this community, as well as in the rest of Africa.
为非洲农村发展具有适应性技术的小型光伏供电系统:设计、成本和效率分析
本研究的目的是设计一个小型光伏系统,以支持刚果共和国一个农村的电力供应。采用一种简单的阻抗匹配系统和一种创新的面板倾斜系统作为自适应技术,提高了系统的输出功率,降低了系统的资金和运行成本。实验结果表明,在赤道环境下,采用串联并联阻抗匹配配置,可使400 W四板光伏系统的日发电量增加15%;采用自动面板倾斜系统,使面板上的太阳辐射始终处于正常入射状态,可使系统的日发电量从3.3 kWh / d增加到约4.5 kWh / d,可使系统的日发电量增加36%。这些技术的实施相应地降低了同样比例的能源供应成本,根据10年的运行时间计算,最终的电力成本约为每千瓦时3.60兰特,初始资本支出为每瓦37兰特。这些成本远低于为村庄安装电网线路的成本,而且该技术还确保了社区的完全自主供电。该研究还确定了在该社区以及非洲其他地区创造许多新的商业和就业机会的潜力。
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来源期刊
CiteScore
3.00
自引率
0.00%
发文量
16
审稿时长
6 months
期刊介绍: The journal has a regional focus on southern Africa. Manuscripts that are accepted for consideration to publish in the journal must address energy issues in southern Africa or have a clear component relevant to southern Africa, including research that was set-up or designed in the region. The southern African region is considered to be constituted by the following fifteen (15) countries: Angola, Botswana, Democratic Republic of Congo, Lesotho, Malawi, Madagascar, Mauritius, Mozambique, Namibia, Seychelles, South Africa, Swaziland, Tanzania, Zambia and Zimbabwe. Within this broad field of energy research, topics of particular interest include energy efficiency, modelling, renewable energy, poverty, sustainable development, climate change mitigation, energy security, energy policy, energy governance, markets, technology and innovation.
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