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DISCRETE APPROXIMATION AND CONTROL OF HIGH-ORDER NONLINEAR CONTINUOUS SYSTEMS

机译:高阶非线性连续系统的离散逼近与控制

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Approximation-based approaches to hybrid control systems synthesis have been mostly limited to problems with low-order linear continuous dynamics. In this contribution, results from the theory of monotone dynamical systems are used to efficiently compute discrete approximations for a class of nonlinear models. Furthermore, a situation is inves-tigated where the high-dimensional plant state converges to a low-dimensional manifold; in the proposed approach the computational effort is governed by the dimension of the low-order manifold without neglecting the high-order dynamics. Results are applied to synthesize a discrete event controller for the automatic start-up of a nonlinear distillation column model of 42nd order.
机译:基于近似的混合控制系统综合方法主要限于低阶线性连续动力学问题。在此贡献中,单调动力系统理论的结果用于有效地计算一类非线性模型的离散近似。此外,研究了高维植物状态收敛到低维流形的情况。在所提出的方法中,计算工作量由低阶流形的尺寸控制,而不忽略高阶动力学。将结果应用于合成离散事件控制器,以自动启动42阶非线性蒸馏塔模型。

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