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Interlaboratory Study to Determine Repeatability of the Damp-Heat Test Method for Potential-Induced Degradation and Polarization in Crystalline Silicon Photovoltaic Modules

机译:确定结晶硅光伏组件中电位诱导降解和极化的湿热试验方法重复性的实验室间研究

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摘要

abstract: To test reproducibility of a technical specification under development for potential-induced degradation (PID) and polarization, three crystalline silicon module types were distributed in five replicas each to five laboratories. Stress tests were performed in environmental chambers at 60 °C, 85% relative humidity, 96 h, and with module nameplate system voltage applied. Results from the modules tested indicate that the test protocol can discern susceptibility to PID according to the pass/fail criteria with acceptable consistency from lab to lab; however, areas for improvement are indicated to achieve better uniformity in temperature and humidity on the module surfaces. In the analysis of variance of the results, 6% of the variance was attributed to laboratory influence, 34% to module design, and 60% to variability in test results within a given design. Testing with the additional factor of illumination with ultraviolet light slowed or arrested the degradation. Testing at 25 °C with aluminum foil as the module ground was also examined for comparison. The foil, as tested, did not itself achieve consistent contact to ground at all surfaces, but methods to ensure more consistent grounding were found and proposed. The rates of degradation in each test are compared, and details affecting the rates are discussed.
机译:摘要:为了测试正在开发的有关电势衰减(PID)和极化的技术规范的可重复性,将三种晶体硅模块类型按五个副本分布到五个实验室。压力测试是在环境箱中于60°C,相对湿度为85%的条件下进行96小时,并施加模块铭牌系统电压。来自测试模块的结果表明,该测试协议可以根据通过/失败标准来区分对PID的敏感性,并且在实验室之间具有可接受的一致性。但是,指出了需要改进的地方,以便在模块表面实现更好的温度和湿度均匀性。在结果的方差分析中,6%的方差归因于实验室影响,34%归因于模块设计,60%归因于给定设计中测试结果的变异性。用紫外线照射的其他因素进行测试可以减缓或阻止降解。还比较了以铝箔作为模块接地在25°C下进行的测试,以进行比较。经过测试的铝箔本身并未在所有表面上实现稳定的接地,但是人们发现并提出了确保接地更均匀的方法。比较每个测试中的降解速率,并讨论影响速率的细节。

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