Silvana Ayala, Yuechen Wu, S. Vorndran, Raphael Perci Santiago, R. Kostuk
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引用次数: 0
Abstract
In this paper we introduce an approach to damping intermittency in photovoltaic (PV) system output due to fluctuations in solar illumination generated by use of a hybrid PV-thermal electric (TE) generation system. We describe the necessary constrains of the PV-TE system based on its thermodynamic characteristics. The basis for the approach is that the thermal time constant for the TE device is much longer than that of a PV cell. When used in combination with an optimized thermal storage device short periods of intermittency (several minutes) in PV output due to passing clouds can be compensated. A comparison of different spectrum splitting systems to efficiently utilize the incident solar spectrum between the PV and TE converters are also examined. The time-dependent behavior of a hybrid PV-TE converter with a thermal storage element is computed with SMARTS modeled irradiance data and compared to real weather and irradiation conditions for Tucson, Arizona.
在本文中,我们介绍了一种方法来阻尼光伏(PV)系统输出的间歇性由于使用混合PV-thermal - electric (TE)发电系统产生的太阳照度波动。基于PV-TE系统的热力学特性,我们描述了其必要的约束条件。该方法的基础是TE器件的热时间常数比PV电池的长得多。当与优化的储热装置结合使用时,可以补偿由于云层通过而导致的PV输出的短时间间歇性(几分钟)。比较了不同的分光系统,以有效地利用PV和TE转换器之间的入射太阳光谱。采用SMARTS模型辐照度数据计算了带有储热元件的混合PV-TE转换器的时间依赖行为,并与亚利桑那州图森市的实际天气和辐照条件进行了比较。