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Optical Design Considerations for High-concentration Photovoltaics

机译:高浓度光伏的光学设计注意事项

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Over the past 15 years, major advances in Concentrating Photovoltaics (CPV) have been achieved. Ultra-efficient Si solar cells have produced commercial concentration systems which are being fielded today and are competitively priced. Advanced research has primarily focused on significantly more efficient multi-junction solar cells for tomorrow's systems. This effort has produced sophisticated solar cells that significantly improve power production. Additional performance and cost improvements, especially in the optical system area and system integration, must be made before CPV can realize its ultimate commercial potential. Structural integrity and reliability are vital for commercial success. As incremental technical improvements are made in solar cell technologies, evaluation and 'fine-tuning' of optical systems properly matched to the solar cell are becoming increasingly necessary. As we move forward, it is increasingly important to optimize all of the interrelated elements of a CPV system for high performance without sacrificing the marketable cost and structural requirements of the system. Areas such as wavelength absorption of refractive optics need to be carefully matched to the solar cell technology employed. Reflective optics' require advanced engineering models to insure uniform flux distribution without excessive losses. In Situ measurement of the Tine-grain' improvements are difficult as multiple variables such as solar insolation, temperature, wind, altitude, etc. infringe on analytical data. This paper discusses design considerations based on 10 years of field trials of high concentration systems and their relevance for tomorrow's advanced CPV systems.
机译:在过去的15年中,聚光光伏(CPV)取得了重大进步。超高效的硅太阳能电池已经生产出商业化的聚光系统,如今已经投入市场并具有竞争力的价格。先进的研究主要集中于为明天的系统提供效率更高的多结太阳能电池。这项工作已经产生了复杂的太阳能电池,可以显着提高发电量。在CPV实现其最终的商业潜力之前,必须进行额外的性能和成本改进,尤其是在光学系统领域和系统集成方面。结构的完整性和可靠性对于商业上的成功至关重要。随着太阳能电池技术的不断进步,对与太阳能电池完全匹配的光学系统的评估和“微调”变得越来越必要。随着我们的前进,在不牺牲系统的市场价格和结构要求的情况下,优化CPV系统的所有相互关联的要素以实现高性能就变得越来越重要。折射光学器件的波长吸收等区域需要与所采用的太阳能电池技术仔细匹配。反射光学器件需要先进的工程模型,以确保均匀的光通量分布而不会造成过多损失。由于多种因素(例如日照,温度,风,海拔等)侵犯了分析数据,因此很难对原纹进行原位测量。本文讨论了基于10年高浓度系统的现场试验的设计考虑因素,以及它们与明天的先进CPV系统的相关性。

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