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Development of an ion-barrier film on solar panel glass

机译:在太阳能电池板玻璃上开发离子阻挡膜

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Potential Induced Degradation (PID) is becoming a greater risk for contemporary modules due to higher voltage connections as well as the availability of ungrounded PV systems using transformer-less or bi-polar inverter technology, both of which create a higher operating voltage between the PV module and frame. This higher voltage is theorized to induce ions to migrate through the PV module's glass to the cell's surface and thereby increase the leakage current. In this work we demonstrate the reduction and possible prevention of PID by employing functionalized films on the inner and outer surfaces of the PV module front glass. These films have the potential to retard the mobility of both water and charge carriers into and out of the glass. We investigate how variations in the thickness and surface energy of the films affect PID and we investigate how typical anti-reflective coatings in use today on the outer surface of PV module glass affect PID when compared to no coating and to high durability hydrophobic coatings. Low-cost optically optimized glass coatings are an attractive and promising solution for producing PID-resistant PV modules that are independent of the cell technology.
机译:由于更高的电压连接以及使用无变压器或双极逆变器技术的不接地光伏系统的可用性,电势退化(PID)正成为现代模块的更大风险,这两者都会在光伏之间产生更高的工作电压模块和框架。从理论上讲,这种较高的电压会引起离子迁移通过PV模块的玻璃到达电池表面,从而增加泄漏电流。在这项工作中,我们通过在PV组件前玻璃的内表面和外表面上使用功能化膜来演示PID的减少和可能的预防。这些薄膜具有阻碍水和电荷载流子进出玻璃的迁移率的潜力。我们调查了薄膜厚度和表面能的变化如何影响PID,并且与没有涂层和具有高耐久性的疏水性涂层相比,我们调查了当今在PV模块玻璃外表面上使用的典型抗反射涂层对PID的影响。低成本的光学优化玻璃涂层是生产与电池技术无关的抗PID的PV组件的有吸引力且有希望的解决方案。

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