首页> 外文期刊>Journal of control, automation and electrical systems >Design of Adaptive Robust Controller for Second-Order Non-affine Systems with Input Saturation
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Design of Adaptive Robust Controller for Second-Order Non-affine Systems with Input Saturation

机译:用于输入饱和度的二阶非仿射系统自适应鲁棒控制器的设计

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摘要

In this paper, two techniques are introduced to transform an uncertain second-order non-affine system under input saturation to an equivalent affine model. First, this affine model is obtained using the linearization technique with respect to the system inputs. In the case of the system being non-differentiable or its derivative with respect to the input being zero, this technique cannot be used. Then, to cope with this problem, an average dynamical model is suggested using the Filippov's model and the pulse width modulation. Afterward, an adaptive sliding mode controller is designed to overcome the approximation errors appeared in this transformation and inherent system uncertainties. Stability analysis is also derived using the Lyapunov theory. Ultimately, the capability of the proposed method is shown through MATLAB simulations.
机译:在本文中,引入了两种技术以在输入饱和度下变换不确定的二阶非仿射系统到等效的仿射模型。 首先,使用相对于系统输入的线性化技术获得该仿射模型。 在系统的情况下是非可微分的或其衍生物相对于输入为零,不能使用该技术。 然后,要应对这个问题,建议使用Filippov的模型和脉冲宽度调制来建议平均动态模型。 之后,设计自适应滑模控制器以克服该变换中出现的近似误差和固有的系统不确定性。 使用Lyapunov理论也得到稳定性分析。 最终,通过Matlab模拟显示了所提出的方法的能力。

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