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Effects of photovoltaic module soiling on glass surface resistance and potential-induced degradation

机译:光伏组件污染对玻璃表面电阻和电势降解的影响

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The sheet resistance of three soil types (Arizona road dust, soot, and sea salt) on glass were measured by the transmission line method as a function of relative humidity (RH) between 39% and 95% at 60°C. Sea salt yielded a 3.5 orders of magnitude decrease in resistance on the glass surface when the RH was increased over this RH range. Arizona road dust showed reduced sheet resistance at lower RH, but with less humidity sensitivity over the range tested. The soot sample did not show significant resistivity change compared to the unsoiled control. Photovoltaic modules with sea salt on their faces were step-stressed between 25% and 95% RH at 60°C applying -1000 V bias to the active cell circuit. Leakage current from the cell circuit to ground ranged between two and ten times higher than that of the unsoiled controls. Degradation rate of modules with salt on the surface increased with increasing RH and time.
机译:在60°C下,通过传输线方法测量了三种土壤类型(亚利桑那州道路扬尘,煤烟和海盐)的薄层电阻,其相对湿度(RH)是39%至95%之间的函数。当相对湿度在此相对湿度范围内增加时,海盐会使玻璃表面的电阻降低3.5个数量级。在较低的相对湿度下,亚利桑那州道路扬尘显示出降低的薄层电阻,但在测试范围内的湿度敏感性较低。与未污染的对照相比,烟灰样品没有显示出明显的电阻率变化。在60°C时,将其表面带有海盐的光伏模块在25%至95%RH之间逐步施加应力,将-1000 V偏压施加到有源单元电路上。从电池电路到地面的泄漏电流是未污染控件的泄漏电流的两倍至十倍。表面上带有盐的模块的降解率随RH和时间的增加而增加。

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