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First results on the apollon project multi-approach for high efficiency integrated and intelligent concentrating PV modules (systems)

机译:关于高效集成和智能集中式光伏模块(系统)的apollon项目多方法的初步结果

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Next generation concentrating photovoltaic technologies could have a large-scale impact on world electricity production once they will become economically attractive and grid parity will be reached. To proceed towards this important goal, a new large integrated project, APOLLON, has started in July 2008, within the frame of the 7th European Framework program, having the main objective of substantial decrease the Concentrating Photovoltaic (CPV) technology cost to a target value of 2 Euro/W. This ambitious objective is targeted to be reached after five years of research and technological activities in which, both ¿point focus¿ and ¿dense array¿ CPV technologies will be implemented by facing all the technology-critical issues related to each component of the CPV systems. With this contribution we report the principal results obtained during the first year of the project regarding Multi-Junction (MJ) solar cells, concentrator optics, assembling, tracking and testing.
机译:一旦下一代聚光光伏技术在经济上具有吸引力并达到电网平价,它们可能会对世界电力生产产生大规模影响。为了实现这一重要目标,2008年7月,在第七个欧洲框架计划的框架内,启动了一个新的大型综合项目APOLLON,其主要目标是将聚光光伏(CPV)技术成本大幅降低至目标值2欧元/瓦。这个雄心勃勃的目标是经过5年的研究和技术活动而实现的,在该活动中,将通过面对所有技术来实现“重点关注”和“密集阵列” CPV技术。与CPV系统各组成部分相关的关键问题。通过这项贡献,我们报告了在项目的第一年中获得的有关多结(MJ)太阳能电池,聚光器光学器件,组装,跟踪和测试的主要结果。

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