对漂浮式和陆上光伏系统的前景和效率进行了分析

Khalil Saadaoui, K. S. Rhazi, Youssef Mejdoub, A. Aboudou
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引用次数: 0

摘要

世界对能源的需求不断增加,加上自然资源的减少,刺激了对替代能源和可再生能源的需求。然而,可再生能源最大的缺点之一是它的间歇性。目前,世界上大部分的电能来自火电和核能的结合。尽管严重依赖能源进口,摩洛哥在发展太阳能发电能力方面取得了进展,装机容量为760兆瓦,其中200兆瓦来自光伏发电。摩洛哥进一步增加可再生能源生产的一种方法是通过浮动太阳能发电,它利用水坝和水库的水面。这种方法面临的挑战是确保浮动太阳能电池板的安全,以防止它们被风和其他元素吹走。与陆上太阳能发电一样,海上太阳能发电也利用最大功率点跟踪(MPPT)技术来最大限度地提高能源产量。为了比较陆地和海洋太阳能发电系统的效率,利用MATLAB/Simulink模型,通过升压变换器对MPPT太阳能光伏系统进行了设计和仿真。该研究还考察了水流特性对浮动板太阳能输出的影响。16.00 Normal 0 21 false false false MS JA AR-SA 本文章由计算机程序翻译,如有差异,请以英文原文为准。
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An analysis of the prospects and efficiency of floating and overland photovoltaic systems
The world's increasing demand for energy coupled with dwindling natural resources has spurred the need for alternative and renewable energy sources. However, one of the biggest drawbacks of renewable energy is its intermittency. Currently, most of the world's electrical energy comes from thermal power and nuclear energy combined. Despite being heavily reliant on energy imports, Morocco has made progress in developing its solar energy capacity with an installed capacity of 760 MW, 200 MW of which comes from photovoltaics. One way for Morocco to further increase its renewable energy production is through floating solar power, which utilizes the water surface of dams and reservoirs. The challenge with this approach is to secure the floating solar panels to prevent them from being blown about by wind and other elements. Like onshore solar power, offshore solar power also utilizes maximum power point tracking (MPPT) technology to maximize energy production. To compare the efficiency of terrestrial and marine solar power systems, the design and simulation of a solar PV system with MPPT through a boost converter was carried out using MATLAB/Simulink models. The study also examined the impact of water flow characteristics on the output of solar energy from floating panels.
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