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Modeling current transfer from PV modules based on meteorological data

机译:根据气象数据对光伏组件的电流传输进行建模

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Current transferred from the active cell circuit to ground in modules undergoing potential-induced degradation (PID) stress is analyzed with respect to meteorological data. Duration and coulombs transferred as a function of whether the module is wet (from dew or rain) or the extent of uncondensed surface humidity are quantified based on meteorological indicators. With this, functions predicting the mode and rate of coulomb transfer are developed for use in estimating the relative PID stress associated with temperature, moisture, and system voltage in any climate. Current transfer in a framed crystalline silicon module is relatively high when there is no condensed water on the module, whereas current transfer in a thin-film module held by edge clips is not, and displays a greater fraction of coulombs transferred when wet compared to the framed module in the natural environment.
机译:针对气象数据,分析了从活动单元电路传输到经受电位感应降级(PID)应力的模块中的地面的电流。根据模块是湿的(露水还是雨水)或未凝结的表面湿度的程度来确定传递的持续时间和库仑,取决于气象指标。这样,开发了可预测库仑传输模式和速率的函数,可用于估算在任何气候下与温度,湿度和系统电压相关的相对PID应力。当模块上没有冷凝水时,框式晶体硅模块中的电流传递相对较高,而由边夹固定的薄膜模块中的电流传递则不高,与湿润时相比,在库仑中显示出更大比例的库仑传递。自然环境中的框架模块。

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