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Development of Robust, Efficient Control and State Estimation Strategy for the Photovoltaic System using Nonlinear Backstepping Controller

机译:非线性Backstepping控制器的光伏系统鲁棒高效控制与状态估计策略的研究。

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The purpose of this study is to develop a robust, efficient control and a state estimation strategy for the photovoltaic system connected to the resistive load through a boost converter. This work focuses on improving the performance of the standalone photovoltaic system, by using a nonlinear control algorithm. The proposed MPPT control has two objectives: (i) Constructing the optimal PV voltage reference based on a regression plane of the considered PV array, (ii) Extracting the maximum power from this PV array in the presence of various climatic conditions; namely: solar irradiance and temperature. To meet these objectives, a nonlinear controller is designed using the Backstepping technique. A formal analysis using the Lyapunov stability exhibits that the designed controller can extract the optimal PV power. Numerical simulations are performed to highlight the tracking performances compared to a conventional MPPT control (Perturb and Observe).
机译:这项研究的目的是为通过升压转换器连接到电阻负载的光伏系统开发一种鲁棒,有效的控制和状态估计策略。这项工作着重于通过使用非线性控制算法来提高独立光伏系统的性能。提出的MPPT控制具有两个目标:(i)根据所考虑的PV阵列的回归平面构造最佳PV电压参考;(ii)在各种气候条件下从该PV阵列中提取最大功率;即:太阳辐照度和温度。为了实现这些目标,使用Backstepping技术设计了一种非线性控制器。使用Lyapunov稳定性的形式分析表明,设计的控制器可以提取最佳的PV功率。与传统的MPPT控制(Perturb和Observe)相比,进行了数值模拟以突出跟踪性能。

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