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Intercomparison of Pulsed Solar Simulator Measurements between the Mobile Flasher Bus and Stationary Calibration Laboratories

机译:移动闪光器总线与固定校准实验室之间的脉冲太阳模拟器测量结果的比对

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The Swiss Mobile Flasher Bus (SMFB) is equipped with a standard high-quality flasher and a very high throughput of up to 200 PV modules per day could be reached direct at customer site. Recently an analysis of the SMFB's measurement uncertainty budget was presented, resulted in an expanded combined uncertainty of ±3% at a 95% confidence level for standard crystalline Silicon modules. This uncertainty value is about 1% larger than values of the best stationary test labs but enables still very accurate measurements at ambient temperature conditions with the advantage to make more measurements directly on customer's site. In this paper this uncertainty values were tested by intercomparison of measurement results of the SMFB and the stationary JRC ESTI laboratory on the same PV modules performed within the same hour to reduce uncertainty contributions by instability of the device under test DUT. The largest difference of nominal power measurements was found to be smaller 0. 5% for polycrystalline standard modules including the precision measurement at Fraunhofer ISE on the same DUT performed 20 months before. Measurements on standard thin film CIS PV modules resulted in deviations up to 3.7% which are within the calculated SMFB overall uncertainty value of 4%. No light pre-conditioning was performed to the CIS modules and different flasher pulse length was used, 10ms for the SMFB and 1.2ms for the stationary laboratory flasher. In a second intercomparison run the spectral response measurement on module level of SMFB and the JRC ESTI was performed by the use of band pass filters of about 50nm width. The good correlation of the results show that the SMFB spectral response measurement is valuable to calculate the spectral mismatch factor to account for different spectral characteristics of measured PV module, the used monitor cell and the flashers spectra to optimise the overall measurement uncertainty of the SMFB.
机译:Swiss Mobile Flasher Bus(SMFB)配备了标准的高质量闪光灯,每天可直接在客户现场达到高达200个PV模块的极高吞吐量。最近,对SMFB的测量不确定度预算进行了分析,结果在标准晶体硅模块的置信度为95%的情况下,合并不确定度扩大了±3%。该不确定性值比最佳固定测试实验室的值大约1%,但仍可以在环境温度条件下进行非常精确的测量,并具有直接在客户现场进行更多测量的优势。在本文中,通过比较SMFB和固定JRC ESTI实验室在同一小时内执行的同一PV模块上的测量结果来测试此不确定性值,以减少被测设备被测设备的不稳定性所带来的不确定性影响。对于多晶标准模块,包括在20个月前执行的同一DUT上,在Fraunhofer ISE上进行的精密测量,发现标称功率测量的最大差值小于0.5%。在标准薄膜CIS PV模块上进行的测量得出的偏差高达3.7%,在计算出的SMFB总不确定度值为4%的范围内。没有对CIS模块进行光预处理,并且使用了不同的闪光器脉冲长度,SMFB为10毫秒,固定式实验室闪光器为1.2毫秒。在第二次比较中,通过使用约50nm宽度的带通滤波器在SMFB和JRC ESTI的模块级别上进行光谱响应测量。结果的良好相关性表明,SMFB光谱响应测量对于计算光谱失配因数以解决被测PV模块,所使用的监测池和闪光光谱的不同光谱特征具有重要意义,从而可以优化SMFB的整体测量不确定度。

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