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NGCPV: a new Generation of concentrator photovoltaic cells, modules and systems

机译:NGCPV:新一代聚光光伏电池,模块和系统

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摘要

Starting on June 2011, NGCPV has been the first coordinated project between the European Commission and Japanese NEDO in order to advance in the science and technology of concentrator photovoltaics (CPV). Research has covered all relevant areas in CPV, from solar cells to complete systems, including multijunction solar cells, novel solar cell concepts utilizing nanostructures, advanced optics and modules, thermal management, reliability and modeling at all the stages of the CPV chain, rating and round robin schemes and the development of characterization tools for cells, modules and systems (outdoor and indoor). Ending in November 2014, the NGCPV project has attained some remarkable results, such as the manufacturing of a 44.4% world record efficiency triple junction solar cell (by Sharp Corp.) and the development of a 15 kW CPV system (by Daido, BSQ and UPM) with a DC efficiency of 28% under CSOC, which is the highest reported in the world at system level. In this paper we summarize these and other relevant results concerning project activities such as the investigation of novel buffers for growing III-V materials on silicon, novel ~1eV materials for manufacturing quad-junction solar cells, the development of accurate models to forecast the electricity production in CPV plants and novel advanced optical designs for CPV modules, among others.
机译:从2011年6月开始,NGCPV是欧盟委员会与日本NEDO之间的第一个协调项目,目的是提高聚光光伏技术(CPV)的科学技术。研究涵盖了CPV的所有相关领域,从太阳能电池到完整的系统,包括多结太阳能电池,利用纳米结构的新颖太阳能电池概念,高级光学和模块,热管理,可靠性和CPV链各个阶段的建模,评级和循环方案以及针对单元,模块和系统(室外和室内)的表征工具的开发。截至2014年11月,NGCPV项目取得了一些显著成果,例如制造了世界纪录效率44.4%的三结太阳能电池(由Sharp Corp.提供)和开发15 kW CPV系统(由Daido,BSQ和UPM),在CSOC下的直流效率为28%,在系统级别上是世界上最高的。在本文中,我们总结了与项目活动有关的这些和其他相关结果,例如研究在硅上生长III-V材料的新型缓冲剂,用于制造四结太阳能电池的新型〜1eV材料,用于预测电的精确模型的开发在CPV工厂中进行生产,以及用于CPV模块的新颖的先进光学设计等。

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