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Potential and Current Distributions in the Emitter of Solar Cells with a Grid Contact

机译:网格接触的太阳能电池发射极的电势和电流分布

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The design of the grid contact in silicon solar cells is one of the most important steps for the optimization and fabrication of these energy conversion devices. The voltage drop due to the lateral flow of current towards the grid fingers can be a limiting factor causing the reduction of conversion efficiency. For low current levels this voltage drop can be made small, for typical values of sheet resistance in the emitter, but for solar cells made to operate at high sun concentrations this efficiency loss can be important, unless there is a clear vision of the current and voltage distribution so that the emitter and grid design can be improved. Hence, it is important to establish and solve the current and voltage distribution equations for solar cells with a grid contact on top. In this work, first these equations are developed and then they are solved in order to show the effects that the lateral current flow in the emitter cause on the voltage distribution and resistive losses, particularly at high illumination levels
机译:硅太阳能电池的栅极接触设计是优化和制造这些能量转换装置的最重要步骤之一。由于电流朝着栅极指的横向流动而引起的电压降可能是导致转换效率降低的限制因素。对于低电流水平,对于发射极中的薄层电阻的典型值,可以减小该电压降,但对于在高太阳浓度下工作的太阳能电池,除非对电流和电流有清晰的了解,否则效率损失可能很重要。电压分布,从而可以改善发射极和栅极的设计。因此,重要的是建立和求解顶部接触有网格的太阳能电池的电流和电压分布方程。在这项工作中,首先建立这些方程,然后对其求解,以显示发射器中的横向电流对电压分布和电阻损耗的影响,尤其是在高照明水平下

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