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Performance enhancement of PV arrays under partial shading conditions using SEPIC converter

机译:使用SEPIC转换器在部分遮光条件下提高光伏阵列的性能

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Conventional techniques fail to guarantee successful tracking of the global maximum power point under partial-shading conditions. This results in significant reduction in the power generated as wells as the reliability of the photovoltaic energy production system. For the effective utilization of solar panel under partial shading condition, global maximum power point tracking method (GMPPT) is required. This paper discusses an improved perturb and observe technique for tracking global maximum power point of photovoltaic arrays that has better performance even under partial shading condition than the conventional tracking algorithms. Initially GMPP is located by adjusting the control signal and then the control moves to local MPP stage. For the present study, single ended primary inductance converter is used as the dc-dc interface for MPP Tracking. This is a buck-boost derived converter which is better suited for photovoltaic applications than conventional buck-boost converter. Solar panel has been modelled and partial shading effects are implemented. Simulation results showing the performance of modified algorithm are presented with the help of MATLAB/Simulink.
机译:传统技术无法保证在部分阴影条件下成功跟踪全局最大功率点。这导致所产生的功率以及光伏能量产生系统的可靠性的显着降低。为了在部分遮蔽条件下有效利用太阳能电池板,需要使用全局最大功率点跟踪方法(GMPPT)。本文讨论了一种用于跟踪光伏阵列全局最大功率点的改进的扰动和观测技术,该技术即使在部分阴影条件下也具有比常规跟踪算法更好的性能。最初,通过调整控制信号来定位GMPP,然后控制移至本地MPP阶段。对于本研究,单端初级电感转换器用作MPP跟踪的dc-dc接口。这是一个升降压转换器,比传统的升降压转换器更适合光伏应用。对太阳能电池板进行了建模,并实现了部分阴影效果。仿真结果显示了改进算法的性能,并借助MATLAB / Simulink进行了介绍。

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