3-d modelling of electrical parameters’ effects on the heating of the base of an intense light illuminated polycrystalline silicon PV cell

B. Soro, M. Savadogo, B. Zouma, K. E. Tchedre, I. Sourabié, I. Zerbo, M. Zoungrana, D. Bathiébo
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Abstract

Performances of a solar cell are significantly influenced by the heating of the base. Two phenomena contribute to the heating of the base of a PV cell: the heat due to the transfer by conduction of the solar energy radiation received by the surface of the PV cell and the heat generated inside the solar cell by various phenomena related to the movement of photogenerated electrons and holes. Thus, even if the increase of the quantity of carriers leads to improve the PV cell electrical parameters, this phenomenon also leads to the increase of some internal phenomena like thermalization, carriers braking and the carriers collisions which are sources of heating of the base of the solar cell Indeed, electrical parameters (photocurrent, photovoltage, electric power) are physical quantities related to the movement of charge carriers and also to the illumination mode, this means that changing of electrical parameters during the operation of the PV cell leads to a variation of the temperature inside the base of the PV cell. This work presents the effects of the increase of some electrical parameters (photocurrent, photovoltage, electric power) on the behaviour of the temperature of the base of a silicon PV cell under intense light illumination.
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电参数对强光照射多晶硅光伏电池基底加热影响的三维建模
太阳能电池的性能受到基体加热的显著影响。有两种现象有助于光伏电池底座的加热:光伏电池表面接收的太阳能辐射传导产生的热量,以及与光生电子和空穴运动相关的各种现象在太阳能电池内部产生的热量。因此,即使载流子数量的增加导致PV电池电参数的改善,这种现象也会导致一些内部现象的增加,如热化、载流子制动和载流子碰撞,它们是太阳能电池底座的加热源,电参数(光电流、光电压、电功率)是与电荷载流子的移动以及照明模式相关的物理量,这意味着在PV电池的操作期间电参数的变化导致PV电池的基座内部的温度变化。这项工作介绍了在强光照射下,一些电参数(光电流、光电压、电功率)的增加对硅光伏电池基底温度行为的影响。
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