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Achievement of MPPT by finite time convergence sliding mode control for photovoltaic pumping system

机译:光伏泵系统有限时间收敛滑模控制实现MPPT

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摘要

In this paper, a new finite time stability approach is proposed for controlling the Maximum Power Point Tracking (MPPT) process. This approach is based on variable structure sliding mode technique. While standard Sliding Mode Control (SMC) forces the system to converge to the reference value in infinite time, the proposed method, Finite Time Sliding Mode Control (FTSMC), ensures the convergence in a given finite time. As a result, FTSMC ensure a fast error tracking capability. For the validation of this strategy, a Photovoltaic (PV) water pumping system is considered and intended to maintain this system operating at Maximum Power Point (MPP). A DC/DC power converter is inserted between the Photovoltaic Generator (PVG) and DC motor by the duty cycle, which is considered to be the control variable. Some simulation results are given for comparison with standard SMC and Perturb and Observe (P&O) methods.
机译:在本文中,提出了一种新的有限时间稳定性方法来控制最大功率点跟踪(MPPT)过程。该方法基于可变结构滑模技术。虽然标准滑模控制(SMC)迫使系统在无限时间内收敛到参考值,但建议的方法“有限时间滑模控制(FTSMC)”可确保在给定的有限时间内收敛。结果,FTSMC确保了快速的错误跟踪能力。为了验证此策略,考虑了光伏(PV)抽水系统,该系统旨在维持该系统在最大功率点(MPP)下运行。 DC / DC电源转换器通过占空比被插入到光伏发电机(PVG)和DC电动机之间,该占空比被认为是控制变量。给出了一些仿真结果,以便与标准SMC和Perturb and Observe(P&O)方法进行比较。

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