首页> 外文期刊>Photovoltaics, IEEE Journal of >Temperature Coefficients and Operating Temperature Verification for Passivated Emitter and Rear Cell Bifacial Silicon Solar Module
【24h】

Temperature Coefficients and Operating Temperature Verification for Passivated Emitter and Rear Cell Bifacial Silicon Solar Module

机译:钝化发射极和后电池双晶体太阳能模块的温度系数和工作温度验证

获取原文
获取原文并翻译 | 示例
       

摘要

In this article, the temperature coefficients of the bifacial passivated emitter and rear cell (PERC) solar module and the full-area aluminum back surface field (Al-BSF) solar module were calculated based on the theoretical model under different module temperatures and irradiances. Meanwhile, the measured temperature coefficients were obtained by testing the performance of bifacial PERC solar module and conventional Al-BSF solar module under different module temperatures and irradiances. The results show that the laboratory measurements are close to the calculated values, and the normalized temperature coefficients of output power for the bifacial PERC solar module are lower than that of the conventional Al-BSF solar module under the same operating conditions. An interesting finding is that the normalized temperature coefficients of short-circuit current for the bifacial PERC solar module are larger than that of the conventional Al-BSF solar module under the same irradiance. This is attributed to lower back surface recombination velocity and higher carrier collection efficiency of PERC solar cells compared with conventional Al-BSF solar cells. Additionally, the operating temperatures of the bifacial PERC solar module and conventional Al-BSF solar module were surveyed outdoor. It is found that the operating temperature of the bifacial PERC solar module is higher than that of the conventional Al-BSF solar module in some cases. However, this tendency is reversed in other cases when these two solar modules work under the same environmental conditions. The conclusion was explained reasonably according to the actual operating conditions of solar modules. The obtained results in this work can provide useful insight into evaluating the field performance of the bifacial PERC solar module.
机译:在本文中,基于不同模块温度和辐射的理论模型计算了双脉冲钝化发射器和后电池和后电池(PERC)太阳能模块和全面积铝背面(AL-BSF)太阳能模块的温度系数。同时,通过在不同的模块温度和辐射下测试双面PERC太阳能模块和传统的AL-BSF太阳能模块的性能来获得测量的温度系数。结果表明,实验室测量靠近计算值,双因素PERC太阳能模块的输出功率的归一化温度系数低于传统的AL-BSF太阳能模块在相同的操作条件下的温度系数。有趣的发现是双因素PERC太阳能模块的短路电流的归一化温度系数大于相同辐照下的传统AL-BSF太阳能模块的温度系数。与常规的Al-BSF太阳能电池相比,这归因于较低的后表面重组速度和较高的载体收集效率。另外,接受了接受平等的PERC太阳能模块和传统的AL-BSF太阳能模块的操作温度。发现在某些情况下,双因素PERC太阳能模块的工作温度高于传统的AL-BSF太阳能模块的工作温度。然而,当这两个太阳能模块在相同的环境条件下工作时,这种趋势在其他情况下逆转。结论是根据太阳能模块的实际操作条件合理解释的。在本工作中获得的结果可以提供有用的洞察评估双因素PERC太阳能模块的场性能。

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