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Modified Perturb and Observe MPPT Algorithm for Drift Avoidance in Photovoltaic Systems

机译:改进的扰动并遵守MPPT算法以防止光伏系统漂移

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The perturb and observe (P&O) maximum power point tracking (MPPT) algorithm is a simple and efficient tracking technique. However, the P&O tracking method suffers from drift in case of an increase in insolation , and this drift effect is severe in case of a rapid increase in insolation. Drift occurs due to the incorrect decision taken by the conventional P&O algorithm at the first step change in duty cycle during increase in insolation. A modified P&O technique is proposed to avoid the drift problem by incorporating the information of change in current in the decision process in addition to change in power and change in voltage . The drift phenomena and its effects are clearly demonstrated in this paper for conventional P&O algorithm with both fixed and adaptive step size technique. A single-ended primary inductance converter is considered to validate the proposed drift-free P&O MPPT using direct duty ratio control technique. MATLAB/Simulink is used for simulation studies, and for experimental validation, a microcontroller is used as a digital platform to implement the proposed algorithm. The simulation and experimental results showed that the proposed algorithm accurately tracks the maximum power and avoids the drift in fast changing weather conditions.
机译:摄动和观察(P&O)最大功率点跟踪(MPPT)算法是一种简单而有效的跟踪技术。但是,在日照增加的情况下,P&O跟踪方法会产生漂移,而在日照迅速增加的情况下,这种漂移效果很严重。由于在日照增加期间占空比的第一步变化时,由于常规P&O算法做出的错误决定而导致出现漂移。提出了一种改进的P&O技术,除了功率变化和电压变化之外,还通过在决策过程中结合电流变化信息来避免漂移问题。在常规P&O算法中,采用固定步长和自适应步长技术,都清楚地证明了漂移现象及其影响。考虑使用单端初级电感转换器来使用直接占空比控制技术来验证所提出的无漂移P&O MPPT。 MATLAB / Simulink用于仿真研究,并且为了进行实验验证,将微控制器用作实现所提出算法的数字平台。仿真和实验结果表明,该算法能够准确跟踪最大功率,避免了天气条件变化迅速时的漂移。

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