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NEW ARCHITECTURE FOR UTILITY-SCALE ELECTRICITY FROM CONCENTRATOR PHOTOVOLTAICS

机译:浓缩仪光伏电型电力的新架构

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The paper describes a new system architecture optimized for utility-scale generation with concentrating photovoltaic cells (CPV) at fossil fuel price. We report on-sun tests of the architecture and development at the University of Arizona of the manufacturing processes adapted for high volume production. The new system takes advantage of triple junction cells to convert concentrated sunlight into electricity. These commercially available cells have twice the conversion efficiency of silicon panels (40%) and one-tenth the cost per watt, when used at 1000x concentration. Telescope technology is adapted to deliver concentrated light to the cells at minimum cost. The architecture combines three novel elements: large (3.1 m x 3.1 m square) dish reflectors made as back-silvered glass monoliths; 2.5 kW receivers at each dish focus, each one incorporating a spherical field lens to deliver uniform illumination to multiple cells; and a lightweight steel spaceframe structure to hold multiple dish/receiver units in coalignment and oriented to the sun. Development of the process for replicating single-piece reflector dishes is well advanced at the Steward Observatory Mirror Lab. End-to-end system tests have been completed with single cells. A lightweight steel spaceframe to hold and track eight dish/receiver units to generate 20 kW has been completed. A single 2.5 kW receiver is presently under construction, and is expected to be operated in an end-to-end on-sun test with a monolithic dish before the end of 2010. The University of Arizona has granted an exclusive license to REhnu, LLC to commercialize this technology.
机译:本文介绍了一种新的系统架构,针对富含光伏电池(CPV)的实用规模生成优化,在化石燃料价格上。我们向亚利桑那大学的建筑和开发报告了适用于高批量生产的制造工艺的阳光测试。新系统利用三联网电池将集中的阳光转化为电力。当使用时,这些商业上可获得的电池具有两倍的转换效率,并且在1000倍浓度下使用时,每瓦的成本是每瓦的成本。望远镜技术适于至少成本将浓缩光输送到电池。该建筑结合了三种新颖的元素:大(3.1米x 3.1米平方)盘式反射器,制成后镀银玻璃整料; 2.5 kW接收器在每个碟子聚焦下,每个透镜透镜的每个碟子均匀地向多个电池提供均匀的照明;和轻质钢空间框架结构,以将多个碟子/接收器单元放在合法中,并定向到太阳。在管道观测台镜实验室中,将单件反射器菜肴复制的过程的开发。通过单个单元格完成了端到端系统测试。要保持和跟踪8个碟/接收器单元以产生20 kW的轻质钢空间帧已经完成。目前正在建设中,预计将在2010年底前与单片盘在阳光落地的端到端On-Sun试验中运行。亚利桑那大学已授予Rehnu,LLC的独家许可商业化这项技术。

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