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Nonlinear adaptive control scheme for discrete-time systems with application to freeway traffic flow networks

机译:离散时间系统的非线性自适应控制方案及其在高速公路交通流网络中的应用

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This paper is devoted to the development of adaptive control schemes for uncertain discrete-time systems, which guarantee robust, global, exponential convergence to the desired equilibrium point of the system. The proposed control scheme consists of a nominal feedback law, which achieves robust, global, exponential stability properties when the vector of the parameters is known, in conjunction with a nonlinear, dead-beat observer. The obtained results are applicable to highly nonlinear, uncertain, discrete-time systems with unknown constant parameters. The applicability of the obtained results to real control problems is demonstrated by the rigorous application of the proposed adaptive control scheme to uncertain freeway models. A provided example demonstrates some features of the approach.
机译:本文致力于开发不确定的离散时间系统的自适应控制方案,这保证了系统的所需平衡点的鲁棒,全局,指数收敛。所提出的控制方案包括标称反馈法,当参数的向量结合非线性的死区观察者时,该标称反馈定律是实现了鲁棒,全局,指数稳定性的特性。所得结果适用于具有未知恒定参数的高度非线性,不确定的离散时间系统。所获得的结果对实际控制问题的适用性是通过拟议的自适应控制方案对不确定的高速公路模型的严格应用来证明了实际控制问题。提供的示例演示了方法的一些特征。

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