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Optimization of thermoelectric cooling technology for an active cooling of photovoltaic panel

机译:优化热电冷却技术以主动冷却光伏面板

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The electrical efficiency of PV panel is undesirably influenced by the rise in the panel temperature and accelerates cell degradation which leads to reduction of life expectancy of PV module. A fall in PV module output power with rise in temperature is observed on non-removal of this excessive heat. For cooling such system, thermoelectric technology is appropriate for its integration adjacent to the PV module. Thermoelectric module (TEM) is attached at the back side of PV module for absorption of the heat generated in PV module by infrared spectrum. This paper deals with the active heat sinking from PV system using TEM tiles. Mathematical model for TEM is developed by consideration of temperature dependence of material properties. A temperature based maximum power point tracking (MPPT) scheme is presented for operating TEM at optimal temperature of PV system. Analysis and design of MPPT scheme, current controller and converter are also discussed. The performance improvement of PV system with thermoelectric cooling is presented through simulated results under MATLAB environment to compute the adequate heat sinking from the PV system exposed to wide spectrum other than visible light.
机译:光伏面板的电气效率受到面板温度升高的不期望的影响,并加速电池退化,从而导致光伏组件的预期寿命降低。如果不去除这些过多的热量,则会观察到光伏模块输出功率随温度升高而下降。为了冷却这样的系统,热电技术适合与PV模块相邻集成。热电模块(TEM)安装在PV模块的背面,用于吸收红外光谱中PV模块中产生的热量。本文讨论了使用TEM瓷砖从光伏系统中主动散热。 TEM的数学模型是通过考虑材料特性的温度依赖性而开发的。提出了一种基于温度的最大功率点跟踪(MPPT)方案,用于在光伏系统的最佳温度下运行TEM。还讨论了MPPT方案,电流控制器和转换器的分析和设计。通过在MATLAB环境下的模拟结果来计算具有热电冷却功能的PV系统的性能改进,以计算暴露于可见光以外的宽光谱的PV系统的足够散热。

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