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Experimental analysis of parameter variation and power enhancement of concentrated PV module

机译:聚光光伏组件参数变化与功率提升的实验分析

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Ever increasing energy requirements and rising emission levels have been driving the electricity sector towards more sustainable and eco-friendly methods of power generation. Efficiency improvement of photovoltaic (PV) cell through every possible method is in focus to improve the energy economics of solar PV technology. Concentrated solar PV systems are one of the contenders for high efficiency solar PV systems. However, along with power enhancement, other parameters like open circuit voltage, short circuit current and fill factor of the solar cells that are used in the module are subjected to variation with concentrated solar PV systems. For an inverter, along with power input, the maximum voltage and current inputs are equally important for effective operation. The variation of these parameters in non-linear fashion makes mathematical modelling difficult and complex. Therefore, in the present experiment, variations in voltage, current, fill factor and module temperatures are examined using V-Trough concentrating system. From the experimental results, the actual voltage dependence on temperature and intensity is found to be more compared to the theoretical estimation. Interesting variation of photovoltaic current of concentrated module has been observed during evening times. Fill factor and thermal parameter variations like front and back surface temperature with concentration are simulated and presented along with practical results.
机译:不断增长的能源需求和不断上升的排放水平一直在推动电力部门朝着更可持续,更环保的发电方式发展。通过各种可能的方法来提高光伏(PV)电池的效率是提高太阳能PV技术的能源经济性的重点。集中式太阳能光伏系统是高效太阳能光伏系统的竞争者之一。但是,随着功率的提高,模块中使用的其他参数(如开路电压,短路电流和太阳能电池的填充系数)会随着集中式太阳能光伏系统的变化而变化。对于逆变器,连同电源输入,最大电压和电流输入对于有效运行同样重要。这些参数以非线性方式的变化使数学建模变得困难而复杂。因此,在本实验中,使用V型槽浓缩系统检查电压,电流,填充系数和模块温度的变化。从实验结果中,发现实际电压对温度和强度的依赖性与理论估计值相比更大。在傍晚时分,观察到了集中模块的光伏电流有趣的变化。模拟并显示了填充因子和热参数的变化(例如前后表面温度随浓度的变化)以及实际结果。

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