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Adaptive control scheme for grid-connected photovoltaic systems with unknown bounds

机译:具有未知界限的网格连接光伏系统的自适应控制方案

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An adaptive control scheme for maximum power point tracking of a single-phase grid-connected photovoltaic system is presented. The difficulty on design a controller that may operate a photovoltaic system on its maximum power point (MPP) is that, this MPP depends on temperature and solar irradiance, ambient conditions that are time-varying and difficult to measure. A solution using an on-line sliding mode estimator is presented. It estimates three different parameters that depends on solar irradiance and temperature, eliminating the necessity of having any sensor for these environmental variables. It is capable of estimate time-varying parameters. A complete analysis was done taking into account the non-linearities showed by the closed-loop system. A variation of the Lyapunov redesign technique was used to find a controller that give globally asymptotically stable trajectories of the closed-loop system. An adaptive law was found to substitute a perturbation bound and also to eliminate possible chattering due to the discontinuous controller term. Computer simulations are presented to show the good performance of the controller.
机译:提出了一种自适应控制方案,用于单相网连接光伏系统的最大功率点跟踪。设计难以在其最大功率点(MPP)上操作光伏系统的控制器是,该MPP取决于温度和太阳辐照度,环境条件是时变且难以测量的。提出了使用在线滑模估计器的解决方案。它估计了三种不同的参数,这取决于太阳辐照度和温度,消除了对这些环境变量具有任何传感器的必要性。它能够估计时变参数。考虑到闭环系统显示的非线性,完成了完整的分析。 Lyapunov重新设计技术的变体用于找到一个控制器,其为闭环系统提供全球渐近稳定的轨迹。发现一个自适应定律替代扰动绑定,并且还通过不连续的控制器术语消除可能的喋喋不休。提出了计算机仿真以显示控制器的良好性能。

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