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Experimental review of series resistance determination methods for III-V concentrator solar cells

机译:III-V型聚光太阳能电池串联电阻确定方法的实验综述

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Fourteen solar cell series resistance determination methods are tested for their ability to experimentally determine the series resistance of a III-V concentrator solar cell. For this purpose the series resistance is determined for a range of concentration ratios, the precision is measured and the accuracy by which a known additional resistance can be determined is tested. Only five of the methods perform adequately, but even these should be applied with care since they are either very sensitive to changes in cell temperature or only perform well at relatively high concentration ratios. None of the best values obtained with these five methods deviates more than 3.0 m? from their weighted average of 26.0 m?. The methods of Wolf & Rauschenbach and Aberle et al. were found to perform the best. It would, therefore, be preferable if the International Electrotechnical Commission adopted one of these methods as its series resistance determination standard, instead of its current method which is that of Swanson. Several methods that require only a single IV-curve to determine the series resistance are suitable to determine relative series resistance values.
机译:测试了14种太阳能电池串联电阻确定方法的能力,这些方法可以通过实验确定III-V集中器太阳能电池的串联电阻。为此,在一定的浓度比范围内确定串联电阻,测量精度,并测试可以确定已知附加电阻的精度。只有五种方法可以充分发挥作用,但即使这些方法也要谨慎使用,因为它们要么对细胞温度的变化非常敏感,要么仅在相对较高的浓度比下才能表现良好。这五种方法获得的最佳值均不会超过3.0 m?。从他们的加权平均值26.0 m?。 Wolf&Rauschenbach和Aberle等人的方法。被发现表现最好。因此,如果国际电工委员会采用这些方法中的一种作为其串联电阻确定标准,而不是采用目前的Swanson方法,则更为可取。仅需要单个IV曲线来确定串联电阻的几种方法适合于确定相对串联电阻值。

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