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Advancing efficiency and scale in CPV arrays

机译:提升CPV阵列的效率和规模

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In 2011, Amonix installed over 35 MW of CPV arrays across the U.S Southwest. In order to meet the competitive price targets of these projects, improvements have been made across the power path, from optics to cell. Modules fielded in 2011 produced over 20% more power than those fielded in 2009. The recent deployments provide feedback that enables ongoing optimization for field conditions. The ratio of currents generated by each of the sub-cells in the III–V multijunction is monitored and compared to prediction. An understanding of the balance in sub-cell currents leads to re-tuning of the epitaxial structure for higher energy yield. Losses in the optical path, including the effect of gridline width, have been reduced substantially. High production cell efficiencies, combined with significant improvements in the optical path, have led to peak DC module efficiencies that exceed 34% under operating conditions. A record module rating of 33.5% outdoor operating efficiency has been confirmed by NREL.
机译:2011年,Amonix在美国西南部安装了超过35 MW的CPV阵列。为了满足这些项目的竞争价格目标,从光学到电池的整个功率路径都进行了改进。 2011年投入使用的模块比2009年投入使用的模块发电量高出20%以上。最近的部署提供了反馈信息,可实现对现场条件的持续优化。监视III–V多结中每个子电池产生的电流比率,并将其与预测值进行比较。对子电池电流平衡的理解导致外延结构的重新调整,从而获得更高的能量产量。包括网格线宽度影响在内的光路损耗已大大降低。高生产单元效率,加上光路的显着改善,导致在工作条件下直流模块效率峰值超过34%。 NREL已经确认了创纪录的模块室外运行效率为33.5%。

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