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Optimisation of the performance of a novel rotationally asymmetrical optical concentrator design for building integrated photovoltaic system

机译:用于建筑物集成光伏系统的新型旋转不对称聚光器设计性能的优化

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摘要

Solar energy is one of the renewable energy sources that has shown promising potential in addressing the world's energy needs, particularly via the solar PV (photovoltaic) technology. However, the high cost of installation is still being considered as the main obstacle to the widespread adoption of solar PV system. The use of solar concentrators is one of the solutions that could help to produce lower cost solar PV systems. One of the existing concentrator designs is known as the RADTIRC (rotationally asymmetrical dielectric totally internally reflecting concentrator) which was developed in GCU (Glasgow Caledonian University) since 2010. This paper aims at optimising the existing RADTIRC prototype by increasing its electrical output whilst keeping the cost of the system at minimum. This is achieved by adopting a better material and a different technique to fabricate the concentrator. The optimised RADTIRC prototype was fabricated from PMMA (polymethyl-methacrylate) using injection moulding. It was found that the optimised RADTIRC-PV prototype generated an opto-electronic gain of 4.48 when compared with the bare cell under STC (standard test conditions). A comparison with the old prototype showed that the optimised RADTIRC-PV prototype increased the short circuit current by 13.57% under STC. (C) 2015 Elsevier Ltd. All rights reserved.
机译:太阳能是可再生能源之一,在满足世界能源需求方面表现出了广阔的发展潜力,特别是通过太阳能PV(光伏)技术。然而,高昂的安装成本仍被认为是太阳能光伏系统被广泛采用的主要障碍。太阳能集中器的使用是可以帮助生产低成本太阳能光伏系统的解决方案之一。现有的集中器设计之一被称为RADTIRC(旋转不对称介电的全内反射集中器),自2010年以来在GCU(格拉斯哥喀里多尼亚大学)开发。本文旨在通过增加其电输出同时保持现有的RADTIRC原型来优化现有的RADTIRC原型。系统成本最低。这可以通过采用更好的材料和不同的技术来制造集中器来实现。优化的RADTIRC原型是使用注塑成型法从PMMA(聚甲基丙烯酸甲酯)制成的。结果发现,与STC(标准测试条件)下的裸电池相比,优化的RADTIRC-PV原型产生的光电增益为4.48。与旧原型的比较表明,经过优化的RADTIRC-PV原型在STC下使短路电流增加了13.57%。 (C)2015 Elsevier Ltd.保留所有权利。

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