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Correlation of power loss to string and module level performance for arrays of c-Si and CIGS technologies in the North East climate

机译:东北气候下c-Si和CIGS技术阵列的功率损耗与字符串和模块级性能的相关性

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The generated power output of a PV plant is generally less than the estimated power output. This results in a reduced available power for usage or revenue. This reduction can be minimized with proper real time monitoring of the PV array. The importance of string level monitoring using sensors at the combiner level to identify triggers for underperforming strings, and its further analysis using I-V curve monitoring and infrared imaging, is illustrated in this study. The c-Si string level monitoring indicates that a 2-5% percent difference in Pmax is not always driven by a common cause, with the one array having a reduction in current and another due to voltage differences.. The overall degradation rates are within 0.3% for the 3 year operation period of the array. The correlation of the degradation rate to the performance metrics is presented along with the weather corrected performance ratio of the arrays which is calculated to be 85-90%.
机译:光伏电站的发电量通常小于估计的发电量。这导致使用或收益的可用功率降低。可以通过对PV阵列进行适当的实时监控来最大程度地减少这种减少。在这项研究中说明了使用组合器级别的传感器来识别性能不佳的触发器的字符串级别监视的重要性,以及使用I-V曲线监视和红外成像进行进一步分析的重要性。 c-Si串电平监测表明,Pmax的2%到5%的差异并不总是由共同原因引起的,一个阵列的电流减小,而另一个阵列的电压差引起。总的劣化率在10%以内。阵列的3年运营期为0.3%。给出了退化率与性能指标的相关性,以及阵列经天气校正的性能比率,该比率经计算为85-90%。

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