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Titlebook: Low-Complexity Controllers for Time-Delay Systems; Alexandre Seuret,Hitay Özbay,Hugues Mounier Book 2014 Springer International Publishing

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发表于 2025-3-21 18:57:40 | 显示全部楼层 |阅读模式
书目名称Low-Complexity Controllers for Time-Delay Systems
编辑Alexandre Seuret,Hitay Özbay,Hugues Mounier
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概述Provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems.Presents new direct design methods for fixed-structure and low-order controllers
丛书名称Advances in Delays and Dynamics
图书封面Titlebook: Low-Complexity Controllers for Time-Delay Systems;  Alexandre Seuret,Hitay Özbay,Hugues Mounier Book 2014 Springer International Publishing
描述.This volume in the newly established series Advances in Delays and Dynamics (ADD@S) provides a collection of recent results on the design and analysis of Low Complexity Controllers for Time Delay Systems. A widely used indirect method to obtain low order controllers for time delay systems is to design a controller for the reduced order model of the plant. In the dual indirect approach, an infinite dimensional controller is designed first for the original plant model; then, the controller is approximated by keeping track of the degradation in performance and stability robustness measures..The present volume includes new techniques used at different stages of the indirect approach. It also includes new direct design methods for fixed structure and low order controllers. On the other hand, what is meant by low complexity controller is not necessarily low order controller. For example, Smith predictor or similar type of controllers include a copy of the plant internally in the controller, so they are technically infinite dimensional. However, they have very nice numerical properties from the point of reliable implementation. Therefore, such predictor-based controllers are considered a
出版日期Book 2014
关键词Delay; Low Complexity Controllers; Time-Delay Systems; complexity
版次1
doihttps://doi.org/10.1007/978-3-319-05576-3
isbn_softcover978-3-319-34988-6
isbn_ebook978-3-319-05576-3Series ISSN 2197-117X Series E-ISSN 2197-1161
issn_series 2197-117X
copyrightSpringer International Publishing Switzerland 2014
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Design of First Order Controllers for Unstable Infinite Dimensional Plantshe approach is based on the small gain theorem and requires minimization of an . norm of a transfer function over a low number of parameters. The gain margin optimization problem is solved for PD controllers. For PI controllers, optimization of the integral action gain is also discussed.
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Controller Design for a Class of Delayed and Constrained Systems: Application to Supply Chainstabilization of input time delay systems, using a predictor based feedback approach. This classical control method, which permits to overcome the delays, is enriched by using saturation terms that allow the consideration of the physical constraints of the system resources composing the serial supply chains.
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State-Dependent Sampling for Online ControlMI based algorithm that optimizes the choice of the Lyapunov function so as to enlarge the lower-bound of the sampling function while taking into account both the perturbations and the decay-rate. The advantages of the approach are illustrated with a numerical example from the literature.
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