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Adaptive Observer-based Control Strategy for Maximum Power Point Tracking of Uncertain Photovoltaic Systems

机译:基于自适应观察者的控制策略,用于不确定光伏系统的最大功率点跟踪

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This work presents an adaptive observer-based control strategy for maximum power point tracking (MPPT) of uncertain photovoltaic (PV) systems. On the one hand, the PVG output voltage and/or current measurements are needed for MPPT techniques and controllers design and, on the other hand, the PV arrays have to be installed in a site that profits from good daily sunshine. This obviously leads to difficulty of PVG output current and voltage measurement if ever such a site is at great distance from the converter. Furthermore, the MPPT control accuracy could be significantly affected due to the cable parameters if only voltage and current measurements on the converter side of the cable are instead used. To overcome this issues, an adaptive extended Kalman-like observer providing estimates of PVG output current and voltage regardless of cable resistance and inductance deviations, is first designed. Afterwords, a backstepping controller is synthesized to ensure the MPPT objective. The designed adaptive observer-based MPPT control convergence is formally analyzed and its effectiveness in compensating for cable parameters uncertainties on the MPPT accuracy is validated through numerical simulations.
机译:该工作提出了一种基于自适应观察者的控制策略,用于不确定光伏(PV)系统的最大功率点跟踪(MPPT)。一方面,MPPT技术和控制器设计需要PVG输出电压和/或电流测量,另一方面,必须安装PV阵列在良好的日常阳光下的场地中安装。如果距离转换器相比,这显然会导致PVG输出电流和电压测量的难度导致电流和电压测量。此外,如果仅使用电缆的转换器侧的电压和电流测量,则由于电缆参数,MPPT控制精度可能会受到显着的影响。为了克服这个问题,首先设计了一种自适应扩展卡尔曼观察者提供PVG输出电流和电压的估计,无论有电缆电阻和电感偏差如何。然后,合成了一个反斜杠控制器以确保MPPT目标。正式分析了设计的基于自适应观察者的MPPT控制收敛,通过数值模拟验证了在MPPT精度补偿电缆参数不确定度的其有效性。

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