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Control of PV-Battery Based Hybrid Water Pumping System Under Sudden Irradiance and Speed Changes

机译:突然辐照和速度变化下基于光伏电池的混合水泵系统的控制

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This contribution presents the control of a hybrid water pumping system powered by a photovoltaic (PV) power source and a battery. This system comprises an induction motor (IM) and three static converters, including a boost converter, a bidirectional (BDC) buck-boost converter and a voltage source inverter (VSI). A maximum power point tracking (MPPT) controller based on a fuzzy logic controller (FLC) is designed to generate a variable step size reference current. Moreover, a sliding surface based on the current state variable is designed to force the boost inductor current to follow the reference current previously provided by the MPPT. The working principle of the bidirectional buck-boost converter is examined. Furthermore, two closed-loop proportional-integral (PI) controllers are designed for the power flow management between the DC-bus and the battery. Finally, the control scheme based on input-output linearization (IOL) is employed to control the induction motor. In order to assess the performances of the controlled three-stage hybrid water pumping system, a simulation is carried out using MATLABISimulink software, and the performances of the system are evaluated under sudden irradiance and speed changes.
机译:该贡献提出了对由光伏(PV)电源和电池供电的混合水泵系统的控制。该系统包括一个感应电动机(IM)和三个静态转换器,包括升压转换器,双向(BDC)降压-升压转换器和电压源逆变器(VSI)。基于模糊逻辑控制器(FLC)的最大功率点跟踪(MPPT)控制器被设计为生成可变步长的参考电流。此外,基于电流状态变量的滑动表面被设计为强制升压电感器电流遵循MPPT先前提供的参考电流。研究了双向降压-升压转换器的工作原理。此外,设计了两个闭环比例积分(PI)控制器,用于DC总线和电池之间的功率流管理。最后,采用基于输入输出线性化(IOL)的控制方案来控制感应电动机。为了评估受控三级混合水泵系统的性能,使用MATLABISimulink软件进行了仿真,并在突然的辐照度和速度变化下评估了系统的性能。

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