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A voltage divider strategy for reducing the hot spot temperature in partially shaded solar panels

机译:用于减少部分阴影太阳能电池板的热点温度的分压器策略

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Over-temperature occurring in silicon solar panels, subject to partial shadowing, are reduced by means of a series connected voltage divider which sustains part of the reverse voltage developing across the shaded solar cells. The circuit is based on a power MOSFET which is driven by the output voltage of the solar panel. When the solar panel is uniformly illuminated the MOSFET is in the ON state and does not affect the operation of the module, while, when the solar panel is partially shaded, and the output voltage decreases, the MOSFET enters in the pinch-off operation mode, thus subtracting its voltage from the reverse voltage across the shaded cell. Experiments performed on a commercial solar panel showed one third of reduction of the reverse voltage across shaded solar cells, with a reduction of the hot spot temperature of about 25°C.
机译:通过串行遮蔽的硅太阳能电池板中发生过温度,通过串联连接的分压器减小,该分压器维持在阴影太阳能电池上产生的一部分反向电压。该电路基于由太阳能电池板的输出电压驱动的功率MOSFET。当太阳能电池板均匀地照亮时,MOSFET处于ON状态并且不会影响模块的操作,而当太阳能电池板部分阴影时,输出电压减小,MOSFET在夹紧操作模式下进入。 ,从阴影单元上从反向电压中减去其电压。在商用太阳能电池板上进行的实验显示阴影太阳能电池上的反向电压的三分之一,其热点温度约为25℃。

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