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Titlebook: Stabilizing and Optimizing Control for Time-Delay Systems; Including Model Pred Wook Hyun Kwon,PooGyeon Park Book 2019 Springer Internation

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書(shū)目名稱Stabilizing and Optimizing Control for Time-Delay Systems
副標(biāo)題Including Model Pred
編輯Wook Hyun Kwon,PooGyeon Park
視頻videohttp://file.papertrans.cn/876/875434/875434.mp4
概述Introduces three important stabilizing controls in the time domain with unified frameworks and notations.Utilizes linear matrix inequalities in stabilizing and optimizing control designs for easier co
叢書(shū)名稱Communications and Control Engineering
圖書(shū)封面Titlebook: Stabilizing and Optimizing Control for Time-Delay Systems; Including Model Pred Wook Hyun Kwon,PooGyeon Park Book 2019 Springer Internation
描述.Stabilizing and Optimizing Control for Time-Delay Systems.?introduces three important classes of stabilizing controls for time-delay systems: non-optimal (without performance criteria); suboptimal (including guaranteed costs); and optimal controls. Each class is treated in detail and compared in terms of prior control structures. State- and input-delayed systems are considered. The book provides a unified mathematical framework with common notation being used throughout..Receding-horizon, or model predictive, linear quadratic (LQ), linear-quadratic-Gaussian and H∞ controls for time-delay systems are chosen as optimal stabilizing controls. Cost monotonicity is investigated in order to guarantee the asymptotic stability of closed-loop systems operating with such controls...The authors use guaranteed LQ and?.H.∞?controls as representative sub-optimal methods; these are obtained with pre-determined control structures and certain upper bounds of performance criteria. Non-optimal stabilizing controls are obtained with predetermined control structures but with no performance criteria. Recently developed inequalities are exploited to obtain less conservative results...To facilitate comput
出版日期Book 2019
關(guān)鍵詞Stability and Stabilization; Non-Optimal Stabilizing Control; Optimal Stabilizing Control; Sub-Optimal
版次1
doihttps://doi.org/10.1007/978-3-319-92704-6
isbn_softcover978-3-030-06496-9
isbn_ebook978-3-319-92704-6Series ISSN 0178-5354 Series E-ISSN 2197-7119
issn_series 0178-5354
copyrightSpringer International Publishing AG, part of Springer Nature 2019
The information of publication is updating

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Stability of Time-Delay Systems,al variables. Thus the stability of homogeneous time-delay systems is very important. This chapter is devoted to various stability and robust stability test methods for homogeneous time-delay systems. After general time-delay systems are briefly introduced, then linear time-delay systems are followe
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LQG Optimal Controls,us chapter require state feedback ones. State observers or filtered estimates are obtained from inputs and outputs to be used for LQG controls. First, finite horizon LQG controls are dealt with, which are fundamental results mathematically. Since they cannot be used as feedback controls due to the i
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Optimal Controls,ontrols are free without any prior requirements, while control structures of non-optimal stabilizing controls and guaranteed cost controls are given a priori in feedback forms with unknown gain matrices. Finite horizon . controls are dealt with for free terminal states. Due to the inherent requireme
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0178-5354 in stabilizing and optimizing control designs for easier co.Stabilizing and Optimizing Control for Time-Delay Systems.?introduces three important classes of stabilizing controls for time-delay systems: non-optimal (without performance criteria); suboptimal (including guaranteed costs); and optimal
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Book 2019imal (without performance criteria); suboptimal (including guaranteed costs); and optimal controls. Each class is treated in detail and compared in terms of prior control structures. State- and input-delayed systems are considered. The book provides a unified mathematical framework with common notat
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