控制电流,提高热电发电机和冷却器的COP,用于光伏板冷却

Yahya A. Alhammad, W. Al-Azzawi, T. Tutunji
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引用次数: 6

摘要

本文采用一种基于珀尔帖效应的方法,利用汽车排气系统排放的废热来提高光伏板的功率效率。热电冷却器(TEC)和热电发电机(TEG)模块用于冷却,从而提高用作混合动力汽车辅助电能的太阳能电池板的效率。TEG应该安装在排气系统上,而TEC应该安装在太阳能电池板上。通过MATLAB仿真表明,降低太阳能板的温度可以提高太阳能板的效率。结果表明,当温度梯度大于80℃时,效率提高60%以上。提出了一种基于TEG和TEC模块的混合应用光伏板优化使用模型。计算TEGS对排气产生的输出功率和从光伏板到散热器的散热量。主要贡献是建立了电流控制的数学模型。该电流驱动TEG模块为TEC模块供电,以实现最佳电流,从而提高性能系数(COP)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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Current control to improve COP of thermoelectric generator and cooler for PV panel cooling
In this work, a method (based on Peltier effect) is used to improve power efficiency for photovoltaic panel by using the wasted heat energy emitted by cars' exhaust systems. Thermoelectric cooler (TEC) and thermoelectric generator (TEG) modules are used to cool down and therefore improve the efficiency of solar panels used as an auxiliary electrical energy in hybrid cars. The TEG should be mounted on the exhaust system while the TEC should be mounted on the solar panel. MATLAB simulation is presented to show that solar panel efficiency is improved by cooling down the panel's temperature. It is shown that the efficiency is increased by more than 60% when the temperature gradient is greater than 80 OC. A proposed model combination of TEG and TEC modules for optimal use of photovoltaic panel in hybrid applications is presented. Calculations of the output electric power that is generated from TEGS on the exhaust and amount of heat dissipated from photovoltaic panel to the heat sink are performed. The main contribution is the formulation of mathematical model for current control. This current drives the TEG module to power the TEC module in order to achieve the optimal current and therefore improve the coefficient of performance, (COP).
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