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A new method to characterize bifacial solar cells

机译:表征双面太阳能电池的新方法

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We present a new method to characterize bifacial solar cells under standard test conditions (STC). The method considers the bifacial operation of the cell and provides the characteristics for simultaneous front and rear side illumination rather than providing the front and the rear side characteristics separately. The method involves measurements of front side electrical parameters (efficiency, open-circuit voltage, short-circuit current and fill factor) and rear side short-circuit current under STC. Two new parameters are introduced, namely bifacial 1.x efficiency (effective efficiency) and gain-efficiency product, which are calculated from the measured STC parameters. The former provides information related to the cell design considering the bifacial operation, whereas the latter provides the end-use benefits from the modules with bifacial cells for a particular installation. To calculate the bifacial 1.x efficiency and the gain-efficiency product, a one-diode solar cell equivalent circuit is used. Characteristic plots are shown for the newly introduced parameters as a function of rear-side illumination for various example solar cells. A sensitivity analysis is performed to understand the influence of each single-sided STC solar cefl parameter on the newly introduced parameters. This sensitivity analysis shows that the fill factor and the rear-to-front current ratio are the most critical parameters for bifacial solar cells.
机译:我们提出了一种在标准测试条件(STC)下表征双面太阳能电池的新方法。该方法考虑了电池的双面操作,并提供了同时进行前后照明的特性,而不是分别提供了前后的特性。该方法涉及在STC下测量前侧电气参数(效率,开路电压,短路电流和填充系数)和后侧短路电流。引入了两个新参数,即双面1.x效率(有效效率)和增益效率乘积,它们是根据测得的STC参数计算得出的。前者提供了考虑双面操作的电池设计相关信息,而后者则提供了针对特定安装的带有双面电池的模块的最终使用收益。为了计算双面1.x效率和增益效率乘积,使用了一个二极管的太阳能电池等效电路。示出了针对各种示例太阳能电池的新引入的参数作为后侧照明的函数的特性图。进行敏感性分析以了解每个单面STC solar cefl参数对新引入的参数的影响。这项敏感性分析表明,填充系数和前后电流比是双面太阳能电池最关键的参数。

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