Holographic CPV field tests at the Tucson Electric Power solar test yard

A. Cronin, J. Castillo, P. Hauser, Glenn Rosenberg, Rakesh Kumar, R. Kostuk, Deming Zhang, J. Russo, S. Vorndran, V. Lonij, James B. Greenberg, A. Brooks
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引用次数: 3

Abstract

Holographic concentrators incorporated into PV modules were used to build a 1600 W grid-tied PV system at the Tucson Electric Power solar test yard. Holograms in concentrating photovoltaic (CPV) modules diffract light to increase irradiance on PV cells within each module. No tracking is needed for low concentration ratios, and the holographic elements are significantly less expensive than the PV cells. Additional advantages include bi-facial acceptance of light, reduced operating temperature, and increased cell efficiency. These benefits are expected to result in higher energy yields [kwh] per unit cost. Field tests of the holographic concentrator system are reported here. A performance ratio greater than 1 was observed. The field tests include comparison with other flat plate non-tracking PV systems at the same test yard. Predicted yields are also compared with the data.
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图森电力公司太阳能测试场的全息CPV现场测试
将全息聚光器集成到光伏模块中,用于在图森电力公司太阳能测试场建造一个1600瓦并网光伏系统。聚光光伏(CPV)模块中的全息图衍射光以增加每个模块内PV电池的辐照度。对于低浓度比,不需要跟踪,并且全息元件比PV电池便宜得多。其他优点包括双面接受光,降低工作温度,提高电池效率。这些好处预计将导致单位成本更高的能源产量[千瓦时]。本文报道了全息聚光系统的现场试验。观察到性能比大于1。现场试验包括与同一试验场其他平板无跟踪光伏系统的比较。预测产量也与实际数据进行了比较。
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