受激发射改进的发光太阳能聚光器

M. R. Kaysir, S. Fleming, Rowan W. MacQueen, T. Schmidt, A. Argyros
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引用次数: 0

摘要

发光太阳能聚光器(LSCs)具有降低太阳能成本的前景,是建筑集成光伏(PV)结构的理想选择。然而,LSCs实现商业上可行的效率目前受到重吸收损失的阻碍。本文介绍了一种利用受激发射来减少LSCs重吸收并改善其定向发射的方法。来自种子激光器(可能是一种廉价的激光二极管)的光穿过LSC面板的整个长度,修改激发染料分子的发射光谱,使其光谱更窄,波长最小的再吸收,并由种子激光器引导到一个小的目标PV电池。建立了该系统的数学模型,确定了影响功率转换效率的各种物理参数,并给出了净有效输出功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Luminescent solar concentrator improvement by stimulated emission
Luminescent solar concentrators (LSCs) offer the prospect of reducing the cost of solar energy, and are a promising candidate for building integrated photovoltaic (PV) structures. However, the realization of commercially viable efficiency of LSCs is currently hindered by reabsorption losses. In this work, a method is introduced for reducing reabsorption as well as improving directional emission in LSCs by using stimulated emission. Light from a seed laser (potentially an inexpensive laser diode) passes through the entire length of the LSC panel, modifying the emission spectrum of excited dye molecules such that it is spectrally narrower, at wavelengths that minimize reabsorption, and directed by the seed laser towards a small target PV cell. A mathematical model of such a system is presented which identifies different physical parameters responsible for the power conversion efficiency and gives the net effective output power.
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