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Development and implementation of modified MPPT algorithm for boost converter‐based PV system under input and load deviation

机译:输入和负载偏差下基于升压变换器的光伏系统改进型MPPT算法的开发与实现

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This paper presents a modified-maximum power point tracking (M-MPPT)-based application of boost converter to extract the power from photovoltaic (PV) module under the variable solar irradiance and load disturbances. The perturb and observe (P&O)-based MPPT algorithm suffers from an inherent drift in case of an increment in solar irradiance. This drift is observed during the variation in duty cycle under rapid increment in solar irradiance. Modified drift avoidance P&O-based MPPT is developed to reject the drift effect by incorporating the current (dI) variation in the algorithm along with the power (dP) and voltage (dV) variation, respectively. The proposed novel drift avoidance P&O M-MPPT algorithm for boost converter is implemented and compared with the conventional P&O algorithm. The drift free performance is demonstrated for the proposed scheme with adaptive duty cycle (Delta D) technique. The simulation study is carried out in MATLAB/Simulink to predict the performance under variations in solar irradiance and load change. Furthermore, the experimental prototype is used to validate the simulation-based results. The proposed schemes are implemented using the dSPACE 1104. The steady state and transient results are showing the reduction in time to achieve the maximum power by the proposed technique successfully. The real time results are successfully validating the same theoretical findings in this work.
机译:本文提出了一种基于改进的最大功率点跟踪(M-MPPT)的升压转换器应用,用于在可变的太阳辐照度和负载干扰下从光伏(PV)模块中提取功率。在太阳辐照度增加的情况下,基于扰动和观察(P&O)的MPPT算法会遭受固有的漂移。在太阳辐照度快速增加的占空比变化过程中观察到这种漂移。改进的基于P&O的避免漂移的MPPT旨在通过将算法中的电流(dI)变化以及功率(dP)和电压(dV)变化分别纳入算法中来抵消漂移影响。实现了提出的新颖的用于升压转换器的避免漂移的P&O M-MPPT算法,并将其与常规P&O算法进行了比较。使用自适应占空比(Delta D)技术对提出的方案证明了无漂移性能。在MATLAB / Simulink中进行了仿真研究,以预测在太阳辐照度和负载变化的情况下的性能。此外,实验原型用于验证基于仿真的结果。所提出的方案是使用dSPACE 1104实现的。稳态和瞬态结果表明,通过所提出的技术成功实现最大功率所需的时间有所减少。实时结果成功验证了这项工作中的相同理论发现。

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