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A novel of adaptive sliding mode controller with observer for DC/DC boost converters in photovoltaic system

机译:具有光伏系统中DC / DC升压转换器观测器的自适应滑模控制器的新颖

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Photovoltaic output voltage strongly depends on the solar irradiance and temperature. From this point of view, it is not possible to connect the PV panels and load directly. DC/DC boost converter is needed to regulate the output voltage. However, to control DC/DC boost converter is very challenging and not an easy task, since it deals with nonlinearity and non-minimum phase system. The unknown varying output voltage of the photovoltaic and unknown load resistance are common problems that needs to be considered. This paper presents modified adaptive sliding mode controller, in which adaptation mechanism is incorporated in observer designing. Observer is designed in order to estimate the unknown but bounded input voltage and load resistance. Furthermore, the controller is designed by employing PI sliding surface to eliminate steady state error under varying parameters and disturbances and to provide fast-transient response. By using this proposed configuration, the control performance is improved. The proposed method have been successfully proved by using Lyapunov theory to ensure its stability. The simulation results show that the proposed strategy can improve the voltage control of boost converter in various conditions.
机译:光伏输出电压强烈取决于太阳辐照度和温度。从这个角度来看,不可能直接连接PV面板并加载。需要DC / DC Boost转换器来调节输出电压。但是,控制DC / DC升压转换器非常具有挑战性,而不是一件容易的任务,因为它涉及非线性和非最小相位系统。光伏和未知负载电阻的未知变化输出电压是需要考虑的常见问题。本文介绍了改进的自适应滑模控制器,其中适配机制结合在观察者设计中。观察者设计为估计未知但有界输入电压和负载电阻。此外,控制器通过采用PI滑动表面来设计以消除不同参数和干扰下的稳态误差,并提供快速瞬态的响应。通过使用这种建议的配置,可以提高控制性能。通过使用Lyapunov理论成功证明了所提出的方法,以确保其稳定性。仿真结果表明,该策略可以提高各种条件中升压转换器的电压控制。

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