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Terminal sliding mode control-based MPPT for a photovoltaic system with uncertainties

机译:基于终端滑模控制的具有不确定性的光伏系统MPPT

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Over the past few decades, the world demand for energy has risen steadily, forcing the world communities to look for alternative sources. Photovoltaic (PV) is seen as the most appropriate solution for this demand. In this context, this paper presents a robust terminal sliding mode control (RTSMC) method for maximum power tracking of stand-alone PV systems. The design method provides good robustness properties in the face of the system uncertainties and change of environment conditions. Starting from the mathematical dependence between the open-circuit voltage ( V_(oc) ) and the optimal operating voltage ( V_(op) ), an MPPT design method is given. To eliminate the tracking voltage error, a RTSMC method is introduced thereafter. A pulse width modulator (PWM) is used to maintain the switching frequency constant. Compared to the P&O algorithm, the proposed methodology reduces the oscillations around the maximum power point (MPP) and provides better performance proprieties. Also, the simulations results prove the robustness qualities of the TSMC-MPPT design method.
机译:在过去的几十年中,世界对能源的需求稳定增长,迫使国际社会寻找替代能源。光伏(PV)被视为满足此需求的最合适解决方案。在这种情况下,本文提出了一种鲁棒的终端滑模控制(RTSMC)方法,用于独立光伏系统的最大功率跟踪。面对系统的不确定性和环境条件的变化,该设计方法提供了良好的鲁棒性。从开路电压(V_(oc))和最佳工作电压(V_(op))之间的数学关系出发,给出了MPPT设计方法。为了消除跟踪电压误差,此后引入了RTSMC方法。脉宽调制器(PWM)用于保持开关频率恒定。与P&O算法相比,所提出的方法减少了最大功率点(MPP)附近的振荡,并提供了更好的性能。仿真结果还证明了TSMC-MPPT设计方法的鲁棒性。

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