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Interlaboratory comparison of angular-dependent photovoltaic device measurements: Results and impact on energy rating

机译:角度依赖光伏器件测量的互责任比较:结果与对能量额定值的影响

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This paper presents the results from an extensive interlaboratory comparison of angular-dependent measurements on encapsulated photovoltaic (PV) cells. Twelve international laboratories measure the incident angle modifier of two unique PV devices. The absolute measurement agreement is +/- 2.0% to the weighted mean for angles of incidence (AOI) <= 65 degrees, but from 70 degrees to 85 degrees, the range of measurement deviations increases rapidly from 2.5% to 23%. The proficiency of the measurements is analysed using the expanded uncertainties published by seven of the laboratories, and it is found that most of the angular-dependent measurements are reproducible for AOI <= 80 degrees. However, at 85 degrees, one laboratory's measurement do not agree to the weighted mean within the stated uncertainty, and measurement uncertainty as high as 16% is needed for the laboratories without uncertainty to be comparable. The poor agreement obtained at 85 degrees indicates that the PV community should place minimal reliance on angular-dependent measurements made at this extreme angle until improvements can be demonstrated. The cloud-based Daidalos ray tracing model is used to simulate the angular-dependent losses of the mono-Si device, and it is found that the simulation agrees to the median measurement within 0.6% for AOI <= 70 degrees and within 1.4% for AOI <= 80 degrees. Finally, the impact that the angular-dependent measurement deviations have on climate specific energy rating (CSER) is evaluated for the six climates described in the IEC 61853-4 standard. When one outlier measurement is excluded, the angular-dependent measurements reported in this work cause a 1.0%-1.8% range in CSER and a 1.0%-1.5% range in annual energy yield, depending on the climate.
机译:本文介绍了封装光伏(PV)电池角度相关测量的广泛实验室间比较结果。12个国际实验室测量两种独特光伏设备的入射角修正值。绝对测量一致性为入射角(AOI)<=65度加权平均值的+/-2.0%,但从70度到85度,测量偏差范围从2.5%迅速增加到23%。使用七个实验室发布的扩展不确定度对测量的熟练度进行分析,发现大多数角度相关测量在AOI≤80度时是可重复的。然而,在85度时,一个实验室的测量值与规定不确定度内的加权平均值不一致,没有不确定度的实验室需要高达16%的测量不确定度才能进行比较。在85度时获得的较差一致性表明,光伏社区应尽可能少地依赖于在该极端角度下进行的角度相关测量,直到可以证明改进。使用基于云的Daidalos射线追踪模型模拟了单硅器件的角相关损耗,发现模拟结果与平均测量值一致,AOI≤70度时为0.6%,AOI≤80度时为1.4%。最后,针对IEC 61853-4标准中描述的六种气候,评估了角度相关测量偏差对气候比能量额定值(CSER)的影响。如果排除一个异常测量值,本研究中报告的角度相关测量值会导致CSER的范围为1.0%-1.8%,年能源产量的范围为1.0%-1.5%,具体取决于气候。

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