...
首页> 外文期刊>Solar Energy >Investigation of temperature coefficients of PV modules through field measured data
【24h】

Investigation of temperature coefficients of PV modules through field measured data

机译:通过现场测量数据调查PV模块的温度系数

获取原文
获取原文并翻译 | 示例
           

摘要

Varying broadband irradiance and temperature are generally known as the major factors influencing the performance of PV modules, but studies have also shown the substantial impact of spectral variations. In this work, a simple and efficient method to calculate the temperature coefficient using long term data is demonstrated. Temperature coefficients of PV modules are estimated from long term performance data following IEC 60891 standard with additional spectral correction, and are compared against the datasheet values. Significant improvement of correlation coefficient from -0.89 to -0.97 is observed during the regression for maximum power temperature coefficient of two poly-crystalline modules, after spectral correction by spectral factor (SF). Also, the standard deviation of yearly estimated values of these coefficients reduced from 5-7 % to 1-2 %. In another setup involving spectral measurements and various PV technologies, the annual mean of 1.62 eV for average photon energy in 350-1700 nm range, suggests a general blue shift of the spectrum. Higher averages than reference values of useful fraction (UF) for c-Si, CIGS and HIT technologies also validate the blue shift of spectrum. Results show SF produces maximum power temperature coefficients closer to the datasheet values compared to UF, suggesting better applicability of SF as an index for spectral correction. The coefficient values were found closer to STC values and the results from Mann and Kendall test, employed to detect any underlying monotonic trend in the development of temperature coefficients over eight years, showed no increasing or decreasing trend and hence no degradation of temperature coefficients for the long-term exposed PV modules.
机译:不同的宽带辐照度和温度通常被称为影响光伏模块性能的主要因素,但研究也显示出光谱变异的显着影响。在这项工作中,对使用长期数据进行计算的简单有效的方法来计算温度系数。 PV模块的温度系数由IEC 60891标准之后的长期性能数据估计,具有额外的光谱校正,并与数据表值进行比较。在通过光谱因子(SF)的光谱校正后,在两种聚结晶模块的最大功率温度系数的回归期间观察到与-0.89至-0.97的相关系数的显着提高。此外,这些系数的年估计值的标准偏差降低了5-7%至1-2%。在涉及光谱测量和各种PV技术的另一个设置中,350-1700nm范围内平均光子能量为1.62eV的年平均值,表明光谱的一般蓝移。比C-Si,CIGS和HIT技术的有用级分(UF)的参考值更高的平均值也验证了光谱的蓝色偏移。结果显示SF与UF相比,SF与近距离数据表值更接近的最大功率温度系数,表明SF作为光谱校正索引的更好适用性。发现系数值更接近STC值以及MANN和KENDALL测试的结果,用于检测八年超过八年的温度系数的任何潜在单调趋势,显示出不断增加或降低趋势,因此不会降低温度系数的降低长期暴露的光伏模块。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号