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Sliding mode controller for a photovoltaic pumping system

机译:用于光伏泵送系统的滑动模式控制器

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In this paper, a sliding mode control scheme (SMC) for maximum power point tracking controller for a photovoltaic pumping system, is proposed. The main goal is to maximize the flow rate for a water pump, by forcing the photovoltaic system to operate in its MPP, to obtain the maximum power that a PV system can deliver.And this, through the intermediary of a sliding mode controller to track and control the MPP by overcoming the power oscillation around the operating point, which appears in most implemented MPPT techniques. The sliding mode control approach is recognized as one of the efficient and powerful tools for nonlinear systems under uncertainty conditions.The proposed controller with photovoltaic pumping system is designed and simulated using MATLAB/SIMULINK environment. In addition, to evaluate its performances, a classical MPPT algorithm using perturb and observe (P&O) has been used for the same system to compare to our controller. Simulation results are shown.
机译:本文提出了一种用于光伏泵送系统的最大功率点跟踪控制器的滑模控制方案(SMC)。主要目标是通过强迫光伏系统在其MPP中运行光伏系统来最大化水泵的流量,以获得PV系统可以提供的最大功率。通过滑动模式控制器的中间体来追踪。并通过克服操作点周围的功率振荡来控制MPP,这在最具实现的MPPT技术中出现。滑模控制方法被识别为不确定性条件下的非线性系统的高效且强大的工具之一。使用MATLAB / SIMULINK环境设计和模拟具有光伏泵送系统的建议控制器。此外,为了评估其性能,使用扰动和观察(P&O)的经典MPPT算法用于与我们的控制器进行比较。显示了仿真结果。

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