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Exponential Stabilization of a Class of Monodimensional Distributed Parameter Systems by Boundary Controller

机译:一类一维分布参数系统边界控制器的指数镇定

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This paper treats the control problem of a class of monodimensional (1D) hyperbolic differential models with nonlinear components by using the boundary controller, the state measuring, and the control action on the boundary of the system. This controller is easy to implement from point of view of measuring techniques and actuation. The proposed algorithm provides the exponential convergence to the desired reference trajectory and rejects the effect of the nonlinear components by using the constraints in state space. A maximum principle of this class of system is inferred in order to evaluate the effect of boundary control. A constructive Lyapunov-based proof of convergence of the control algorithm is carried out. Numerical simulations of a technical model are presented.
机译:本文通过使用边界控制器,状态测量以及对系统边界的控制作用来处理一类具有非线性分量的一维(1D)双曲型微分模型的控制问题。从测量技术和驱动的角度来看,该控制器易于实现。所提出的算法为期望的参考轨迹提供指数收敛,并通过利用状态空间中的约束来拒绝非线性分量的影响。为了评估边界控制的效果,推断出此类系统的最大原理。进行了基于Lyapunov的构造性证明,证明了控制算法的收敛性。提出了技术模型的数值模拟。

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