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首页> 外文期刊>Microelectronics & Reliability >Mitigation of potential-induced degradation (PID) based on anti-reflection coating (ARC) structures of PERC solar cells
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Mitigation of potential-induced degradation (PID) based on anti-reflection coating (ARC) structures of PERC solar cells

机译:基于PERC太阳能电池的减反射涂层(ARC)结构来缓解电势退化(PID)

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摘要

Most of solar power plants use high efficiency solar cell modules using PERC solar cells. Recently, Potential-induced degradation (PID) has been reported in which leakage current occurs due to voltage difference due to grounding, and efficiency and power are reduced within several years. In this work, we tried to change the structure of Anti-reflection coating (ARC) layer in order to mitigate PID in cell-level PERC solar cell. The ARC structure without SiO2, the structure with SiO2 on the surface, and the structure with SiO2 on the bottom are compared, and SiO2 must be located between SiNx and P-N junction to mitigate PID. In addition, PID phenomena occurring in PERC cells were tested for 96 h at 60 degrees C and 1000 V and used an improved method over the cell-level test method based on the TS IEC 628041 standard. Characteristics of PID phenomenon in solar cell were analysed by light I-V, dark I-V and electroluminescence. As a result, SiO2 must be between SiNx and P-N junctions to mitigate the PID. The PERC solar cell PID test using structural studies has mitigated PID by reducing efficiency by 0.04%, output power by 0.001 W, and shunt resistance by 11.77 Omega.
机译:大多数太阳能发电厂使用使用PERC太阳能电池的高效太阳能电池模块。近来,已经报道了电势退化(PID),其中由于接地引起的电压差而产生泄漏电流,并且在几年内降低了效率和功率。在这项工作中,我们试图更改减反射涂层(ARC)的结构,以减轻电池级PERC太阳能电池中的PID。比较了没有SiO2的ARC结构,表面有SiO2的结构和底部有SiO2的结构,必须将SiO2置于SiNx和P-N结之间以减轻PID。此外,在60摄氏度和1000 V下对PERC电池中发生的PID现象进行了96小时的测试,并使用了基于TS IEC 628041标准的电池级测试方法的改进方法。通过亮IV,暗IV和电致发光分析了太阳能电池中PID现象的特征。结果,SiO2必须在SiNx和P-N结之间,以减轻PID。使用结构研究的PERC太阳能电池PID测试通过降低效率0.04%,输出功率0.001 W和分流电阻11.77Ω减轻了PID。

著录项

  • 来源
    《Microelectronics & Reliability 》 |2019年第9期| 113462.1-113462.6| 共6页
  • 作者单位

    Korea Elect Technol Inst New & Renewable Energy Res Ctr 25 Saenari Ro Seongnam Si 13509 Gyeonggi Do South Korea;

    Korea Univ Dept Mat Sci & Engn 145 Anam Ro Seoul 02841 South Korea;

    Govt Policy Coordinat Prime Ministers Secretariat 261 Dasom Ro Sejong Si 30107 South Korea;

    Korea Univ Dept Mat Sci & Engn 145 Anam Ro Seoul 02841 South Korea|KU KIST Green Sch Grad Sch Energy & Environm 145 Anam Ro Seoul 02841 South Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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