Russo Juan M, Zhang Deming, Gordon Michael, Vorndran Shelby, Wu Yuechen, Kostuk Raymond K
Opt Express. 2014 Mar 10;22 Suppl 2:A528-41. doi: 10.1364/OE.22.00A528.
During the past few years there has been a significant interest in spectrum splitting systems to increase the overall efficiency of photovoltaic solar energy systems. However, methods for comparing the performance of spectrum splitting systems and the effects of optical spectral filter design on system performance are not well developed. This paper addresses these two areas. The system conversion efficiency is examined in detail and the role of optical spectral filters with respect to the efficiency is developed. A new metric termed the Improvement over Best Bandgap is defined which expresses the efficiency gain of the spectrum splitting system with respect to a similar system that contains the highest constituent single bandgap photovoltaic cell. This parameter indicates the benefit of using the more complex spectrum splitting system with respect to a single bandgap photovoltaic system. Metrics are also provided to assess the performance of experimental spectral filters in different spectrum splitting configurations. The paper concludes by using the methodology to evaluate spectrum splitting systems with different filter configurations and indicates the overall efficiency improvement that is possible with ideal and experimental designs.
在过去几年中,人们对光谱分裂系统产生了浓厚兴趣,以提高光伏太阳能系统的整体效率。然而,用于比较光谱分裂系统性能以及光谱滤光片设计对系统性能影响的方法尚未得到充分发展。本文探讨了这两个领域。详细研究了系统转换效率,并阐述了光谱滤光片在效率方面的作用。定义了一个名为“优于最佳带隙的改进”的新指标,该指标表示光谱分裂系统相对于包含最高组成单带隙光伏电池的类似系统的效率增益。此参数表明使用更复杂的光谱分裂系统相对于单带隙光伏系统的优势。还提供了用于评估不同光谱分裂配置下实验光谱滤光片性能的指标。本文通过使用该方法评估具有不同滤光片配置的光谱分裂系统来得出结论,并指出理想设计和实验设计可能实现的整体效率提升。