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光伏组件机械载荷测试方法分析及改进 被引量:1

Analysis and Improvement of Mechanical Load Test Methods for Photovoltaic Modules
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摘要 该文分析了现行机械载荷测试方法,指出了现行方法的不足之处,提出了两种具体的改进措施,并用试验验证了措施的必要性和可操作性,从而可以更加全面地评价机械载荷对光伏组件性能的影响。 This paper analyzes current mechanical load test methods,points out the shortcomings of current methods,puts forward two concrete improvement measures,and verifies the necessity and operability of the measures by experiments,which can evaluate the impact of mechanical load on the performance of photovoltaic modules more comprehensively.
作者 董双丽 林荣超 曾飞 刘书强 李维娣 Dong Shuang-li;Lin Rong-chao;Zeng Fei;Liu Shu-qiang;Li Wei-di(Guangdong Testing Institute of Product Quality Supervision,Guangdong Foshan 528300)
出处 《电子质量》 2020年第3期63-66,共4页 Electronics Quality
基金 广东省质量技术监督局科研项目"光伏组件机械载荷关键技术研究"(项目编号:2017CZ01) 广东省质量技术监督局科研项目"高效光伏组件模拟器测试与户外测试方法研究"(项目编号:2018PZ04)。
关键词 光伏组件 机械载荷测试 长期影响 户外实证 加速老化 PVmodules Mechanical load Long-term impact Outdoor empirical Accelerated aging
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  • 1Buehler M J, van Duin A C, Goddard Ⅲ W A. Multiparadigm modeling of dynamical crack propagation in silicon using a reactive force field[J]. Physical review letters, 2006, 96(9): 095505.
  • 2Wohlgemuth J H, Cunningham D W, Placer N V, et al. The effect of cell thickness on module reliability[A]. 33rd IEEE Photovoltaic Specialists Conference(PVSC'08)[C], San Diego, CA, USA, 2008.
  • 3Paggi M, Corrado M, Rodriguez M A. A multi-physics and multi-scale numerical approach to microcracking and power- loss in photovoltaic modules[J]. Composite Structures, 2013, 95:630 638.
  • 4Kontges M, Kunze I, Kajari-Schr6der S, et al. The risk of power loss in crystalline silicon based photovoltaic modules due to micro-cracks[J]. Solar Energy Materials and Solar Cells, 2011, 95(4): 1131 - 1137.
  • 5Kajari-Schrader S, Kunze I, Either U, et al. Spatial and orientational distribution of cracks in cryslalline photovoltaic modules generated by mechanical load tests[J]. Solar Energy Materials and Solar Cells, 2011, 95(11): 3054 - 3059.
  • 6Standard I. 61215. Crystalline silicon terrestrial photovoltaic (PV) modules-Design qualification and type approval[S]. 1995.
  • 7Wohlgemuth J H, Cunningham D W, Monus P, et al. Long term reliability of photovoltaic modules[A]. Conference Record of the 2006 IEEE 4th World Conference on Photovoltaic Energy Conversion [C], Waikoloa, HI, 2006.
  • 8Fuyuki T, Kitiyanan A. Photographic diagnosis of crystalline silicon solar cells utilizing eleetrolumineseence[J]. Applied Physics A, 2009, 96(1): 189 - 196.
  • 9Wen T K, Yin C C. Crack detection in photovoltaic cells by interferometric analysis of electronic speckle patterns[J]. Solar Energy Materials and Solar Cells, 2012, 98:216 - 223.
  • 10Trupke T, Bardos R, Abbott M, et al. Fast photoluminescence imaging of silicon wafers[A]. Conference Record of the 2006 I EEE 4th World Conference on Photovoltaic Energy Conversion[C], Waikoloa, HI, 2006.

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