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On-sun performance of an improved dish-based HCPV system

机译:基于碟形的HCPV系统的阳光性能

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The University of Arizona has developed a new dish-based High Concentration Photovoltaic (HCPV) system which is in the process of being commercialized by REhnu, Inc. The basic unit uses a paraboloidal glass reflector 3.1 m x 3.1 m square to bring sunlight to a high power point focus at a concentration of ~20,000x. A unique optical system at the focus reformats the concentrated sunlight so as to uniformly illuminate 36 triple junction cells at 1200x geometric concentration1. The relay optics and cells are integrated with an active cooling system in a self-contained Power Conversion Unit (PCU) suspended above the dish reflector. Only electrical connections are made to the PCU as the active cooling system within is completely sealed. Eight of these reflector/PCU units can be mounted on a single two axis tracking structure~2. Our 1~(st) generation prototype reflector/PCU unit consistently generated 2.2 kW of power normalized to 1kW/m~2 DNI in over 200 hours of on-sun testing in 2011~3. Here, we present on-sun performance results for our 2~(nd) generation prototype reflector/PCU unit, which has been in operation since June 2012. This improved system consistently generates 2.7 kW of power normalized to 1kW/m~2 DNI and has logged over 100 hours of on-sun testing. This system is currently operating at28% DC net system efficiency with an operating cell temperature of only 20°C above ambient. Having proven this system concept, work on our 3~(rd) generation prototype is underway with a focus on manufacturability, lower cost, and DC efficiency target of 32% or better.
机译:亚利桑那大学已开发了新的基于碟形高浓度光伏(HCPV)系统,该系统是由REhnu被商业化的过程中,该基本单元使用抛物面反射镜玻璃3.1米×3.1米见方,使太阳光到高功率点聚焦在〜20,000的浓​​度。在焦点重新格式化聚集的太阳光甲独特的光学系统,以便均匀地照射36三个结电池在1200X几何concentration1。中继光学器件和细胞成为一体悬挂在盘反射器上面的自包含功率转换单元(PCU)的有源冷却系统。仅电连接到PCU作为内被完全密封所述有源冷却系统制成。这些反射器/ PCU单元的八个可以安装在单个的两轴跟踪结构〜2。我们的1〜(ST)代原型反射器/ PCU单元一致地产生2.2千瓦在2011〜3归一化到1千瓦/米〜2 DNI在超过200小时的对太阳的测试功率。这里,我们提出对太阳我们的2〜(ND)代原型反射器/ PCU单元中,由于2012年6月以来一直在操作的性能结果这种改进的系统持续产生2.7千瓦的功率归一化到1千瓦/米〜2 DNI和已记录超过100小时的日晒测试。该系统当前正在操作at28%DC净系统效率高于环境只有20℃的工作电池温度。已经证明了这系统的概念,工作对我们的3〜(RD)代样机正在进行,重点是制造,成本更低,效率DC目标的32%或更高。

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