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A Method to Test Operating Cell Temperature for BIPV Modules

机译:BIPV模块工作电池温度测试方法

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The nominal operation cell temperature (NOCT) is one of the most critical parameters for a photovoltaic (PV) module. We find that for the emerging types of glass/glass and insulating glass modules, the measurement error between the IEC61215 method and the thermocouple direct measurements on the actual cell can be as high as 15 °C. To address this problem, a new NOCT measurement method for building-integrated photovoltaic (BIPV) modules is proposed. In the new method, the standard reference environment has the same total irradiance (800 W/m2), ambient temperature (20 °C), and wind speed (1 m/s) as IEC61215 but with a closed circuit and a resistive load to ensure the module operates at the maximum power point. This takes into account both the photoelectrical and photothermal conversion effect simultaneously. The cell temperature is measured directly using several thermocouples encapsulated into the BIPV modules at a certain sampling point. The average cell operating temperature for the whole module is further determined by the infrared thermovision measurements after calibration. In addition, the simulated BIPV house was built to simulate the actual installation environment. It is verified that this new method is more accurate to test the NOCT for BIPV modules.
机译:额定工作电池温度(NOCT)是光伏(PV)模块的最关键参数之一。我们发现,对于新兴类型的玻璃/玻璃和中空玻璃模块,IEC61215方法与实际电池上的热电偶直接测量之间的测量误差可能高达15°C。为了解决这个问题,提出了一种用于建筑物集成光伏(BIPV)模块的新型NOCT测量方法。在新方法中,标准参考环境具有与IEC61215相同的总辐照度(800W / m2),环境温度(20°C)和风速(1m / s),但具有闭合电路和电阻负载确保模块以最大功率运行。这同时考虑了光电和光热转换效应。电池温度是使用封装在BIPV模块中的几个热电偶在某个采样点直接测量的。校准后,通过红外热像仪测量进一步确定整个模块的平均电池工作温度。另外,模拟BIPV房屋是为了模拟实际安装环境而建造的。验证了此新方法对于BIPV组件的NOCT测试更为准确。

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