论文标题

撒哈拉以南非洲的低成本集中太阳能系统部署:实施挑战的案例研究

Pilot Low-Cost Concentrating Solar Power Systems Deployment in Sub-Saharan Africa: A Case Study of Implementation Challenges

论文作者

Ramde, Emmanuel Wendsongre, Tchao, Eric Tutu, Fiagbe, Yesuenyeagbe Atsu Kwabla, Kponyo, Jerry John, Atuah, Asakipaam Simon

论文摘要

电力是推动任何给定国家的增长和发展的最关键资源之一。最新的可持续发展目标报告表明,非洲的发电量仍然很大。集中太阳能似乎是填补赤字的潜在选择。这是因为,集中太阳能发电厂的大多数组成部分都以可承受的价格在非洲市场上很容易获得,并且有合格的当地人来建造工厂。撒哈拉以南非洲已实施了微型浓缩太阳能发电厂,并显示出令人鼓舞的结果,可以扩大并利用大规模发电。对次区域中的飞行员集中发电厂的评估注意到,一个值得注意的障碍是跟踪系统未能降低运行跟踪控制系统的运行能源成本并改善多方面的HelioStat聚焦行为。本文强调了在非洲集中太阳能技术研究方面的能源状况和当前的发展。本文还对中央接收器系统的最新太阳能跟踪系统进行了全面综述,以说明有关在计算复杂性,能量消耗和HelioStat对准精度方面设计的有关低成本跟踪系统设计的研究方向。

Electricity is one of the most crucial resources that drives any given nation's growth and development. The latest Sustainable Development Goals report indicates Africa still has a high deficit in electricity generation. Concentrating solar power seems to be a potential option to fill the deficit. That is because most of the components of concentrating solar power plants are readily available on the African market at affordable prices, and there are qualified local persons to build the plants. Pilot micro-concentrating solar power plants have been implemented in Sub-Saharan Africa and have shown promising results that could be expanded and leveraged for large-scale electricity generation. An assessment of a pilot concentrating solar power plant in the sub-region noticed one noteworthy obstacle that is the failure of the tracking system to reduce the operating energy cost of running the tracking control system and improve the multifaceted heliostat focusing behavior. This paper highlights the energy situation and the current development in concentrating solar power technology research in Africa. The paper also presents a comprehensive review of the state-of-the-art solar tracking systems for central receiver systems to illustrate the current direction of research regarding the design of low-cost tracking systems in terms of computational complexity, energy consumption, and heliostat alignment accuracy.

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