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Evaluation of the Main MPPT Techniques for Photovoltaic Applications

机译:光伏应用主要MPPT技术的评估

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This paper presents evaluations among the most usual maximum power point tracking (MPPT) techniques, doing meaningful comparisons with respect to the amount of energy extracted from the photovoltaic (PV) panel [tracking factor (TF)] in relation to the available power, PV voltage ripple, dynamic response, and use of sensors. Using MatLab/Simulink and dSPACE platforms, a digitally controlled boost dc–dc converter was implemented and connected to an Agilent Solar Array E4350B simulator in order to verify the analytical procedures. The main experimental results are presented for conventional MPPT algorithms and improved MPPT algorithms named IC based on proportional–integral (PI) and perturb and observe based on PI. Moreover, the dynamic response and the TF are also evaluated using a user-friendly interface, which is capable of online program power profiles and computes the TF. Finally, a typical daily insulation is used in order to verify the experimental results for the main PV MPPT methods.
机译:本文介绍了最常用的最大功率点跟踪(MPPT)技术中的评估,并对从光伏(PV)面板提取的能量[跟踪因子(TF)]与可用功率PV进行了有意义的比较。电压纹波,动态响应以及传感器的使用。使用MatLab / Simulink和dSPACE平台,实现了数字控制的升压dc-dc转换器,并将其连接到Agilent Solar Array E4350B仿真器,以验证分析程序。给出了传统MPPT算法和基于比例积分(PI)的改进的称为IC的MPPT算法的主要实验结果。此外,还使用用户友好的界面来评估动态响应和TF,该界面能够在线编程功率曲线并计算TF。最后,使用典型的日常隔热材料以验证主要PV MPPT方法的实验结果。

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