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NEW ARCHITECTURE FOR UTILITY-SCALE ELECTRICITY FROM CONCENTRATOR PHOTOVOLTAICS

机译:集中器光伏发电的新型电力结构

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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 l000x 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.rnDevelopment 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.rn utility-scale solar electricity; energy telescope; triple-junction cells; glass reflector dish; spaceframe structure
机译:本文介绍了一种新的系统架构,该架构针对化石燃料价格的聚光光伏电池(CPV)进行了公用事业规模发电的优化。我们报告了亚利桑那大学针对适合大批量生产的制造过程的体系结构和开发的日照测试。新系统利用三结电池将聚光的阳光转化为电能。当以1000x的浓度使用时,这些市售电池的转换效率是硅板的两倍(40%),是每瓦成本的十分之一。望远镜技术适用于以最小的成本将聚焦的光传输到细胞。该体系结构结合了三个新颖的元素:大尺寸(3.1 m x 3.1 m正方形)的碟形反射镜,制成背面镀银的玻璃整体;每个碟形焦点上的2.5 kW接收器,每个接收器都装有一个球面透镜,可为多个单元提供均匀的照明;轻巧的钢制空间框架结构可将多个接收器/接收器单元对准并对准太阳。rn在Steward天文台镜实验室,复制单件反射器接收器的复制工艺已经得到了很好的发展。单个单元已经完成了端到端系统测试。轻便的钢制空间框架已经完成,该框架可固定并跟踪八个碟形接收器单元,以产生20 kW功率。目前正在建造一个2.5 kW的接收器,并有望在2010年底之前使用整体式碟片进行端到端的日光测试。亚利桑那大学已向REhnu,LLC授予独家许可。将这项技术商业化。实用规模的太阳能发电;能量望远镜三结细胞;玻璃反射盘空间框架结构

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