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Effect of Varying Illumination and Temperature on Steady-State and Dynamic Parameters of Dye-Sensitized Solar Cell Using AC Impedance Modeling

机译:交流阻抗模型对光照和温度变化对染料敏化太阳能电池稳态和动态参数的影响

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The steady-state current-voltage curve and dynamic response of a dye-sensitized solar cell (DSSC) is mathematically modeled based on electrical equivalent circuit. The effect of temperature and illumination on the steady-state and dynamic parameters of dye-sensitized solar cells is studied. It is found that the dynamic resistance of DSSC decreases from 619.21 Ωto 90.34 Ωwith the increase in illumination level from 200 W/m2to 800 W/m2. A positive temperature coefficient of dynamic resistance is observed. The interfacial charge transfer and recombination losses at the oxide/dye/electrolyte interface are found to be the most influential factor on the overall conversion efficiency and included in the mathematical model. The saturation current of rectifying diode and saturation current of recombination diode are responsible for the transfer recombination losses and have major influence on the overall conversion efficiency.
机译:基于等效电路,对染料敏化太阳能电池(DSSC)的稳态电流-电压曲线和动态响应进行数学建模。研究了温度和光照对染料敏化太阳能电池稳态和动态参数的影响。结果发现,随着照度从200 W / m2增大到800 W / m2,DSSC的动态电阻从619.21Ω减小到90.34Ω。观察到动态电阻的正温度系数。发现在氧化物/染料/电解质界面处的界面电荷转移和复合损失是对整体转化效率的最大影响因素,并包括在数学模型中。整流二极管的饱和电流和重组二极管的饱和电流是传输重组损失的原因,并且对整体转换效率有重大影响。

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