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Adaptive Extended Kalman-like Observer for Uncertain Photovoltaic Systems

机译:用于不确定光伏系统的自适应扩展卡尔曼的观察者

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摘要

The problem of state and parameter estimation in photovoltaic (PV) systems is addressed. The maximum power point tracking (MPPT) techniques and controllers design involve the PV generator (PVG) delivered voltage and current. However, in situations where PV arrays are located in a remote site from the control unit of the converter, so as to profit from good solar radiation, PVG voltage and current measurements become difficult. From other side, the use of long PV cable between the PVG and the converter would produce substantial voltage drops in the cable, which would consequently result in MPPT control inaccuracies if only voltage and current sensed in the converter input side of the cable are used instead. To avoid this problem, an adaptive Kalman-like observer for PV systems is designed, in this paper. Using only voltage and current measurements in the converter input, the observer performs online estimation of the PVG output voltage and current as well as of the cable resistance and inductance, regardless of these parameters uncertainties. The convergence of the system state and parameters is shown by simulation.
机译:寻址光伏(PV)系统中的状态和参数估计问题。最大功率点跟踪(MPPT)技术和控制器设计涉及PV发生器(PVG)输送电压和电流。然而,在PV阵列位于来自转换器的控制单元的远程站点中的情况下,从良好的太阳辐射中获利,PVG电压和电流测量变得困难。从另一边,在PVG和转换器之间使用LONG PV电缆将在电缆中产生大量电压下降,因此如果仅使用电缆的转换器输入侧的电压和电流,则将导致MPPT控制不准确性。为了避免这个问题,本文设计了一种用于光伏系统的自适应卡尔曼观察者。在转换器输入中仅使用电压和电流测量,观察者执行PVG输出电压和电流以及无论这些参数的不确定性如何执行电缆电阻和电感的在线估计。系统状态和参数的收敛如模拟所示。

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