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Networked control under communicatio...
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Liu, Kun.
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Networked control under communication constraints = a time-delay approach /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Networked control under communication constraints/ by Kun Liu, Emilia Fridman, Yuanqing Xia.
其他題名:
a time-delay approach /
作者:
Liu, Kun.
其他作者:
Fridman, Emilia.
出版者:
Singapore :Springer Singapore : : 2020.,
面頁冊數:
xvi, 258 p. :ill., digital ;24 cm.
內容註:
Introduction -- Stabilization of NCSs via Discontinuous Lyapunov Functionals -- Wirtinger's Inequality and Sampled-data Control -- Networked Control under Round-Robin Protocol -- NCSs in the Presence of TOD and Round-Robin Protocols -- Networked Control with Stochastic Protocol -- Decentralized NCSs with Local Networks under TOD/Round-Robin Protocol -- Dynamic Quantization of Uncertain Linear NCSs -- Discrete-time Network-based Control under Scheduling and Actuator Constraints -- Quantized Control under Round-Robin Protocol -- Improved Stability Conditions for Discrete-time Systems under Dynamic Protocols -- Decentralized Networked Control of Discrete-time Systems with Local Networks.
Contained By:
Springer eBooks
標題:
Time delay systems. -
電子資源:
https://doi.org/10.1007/978-981-15-4230-5
ISBN:
9789811542305
Networked control under communication constraints = a time-delay approach /
Liu, Kun.
Networked control under communication constraints
a time-delay approach /[electronic resource] :by Kun Liu, Emilia Fridman, Yuanqing Xia. - Singapore :Springer Singapore :2020. - xvi, 258 p. :ill., digital ;24 cm. - Advances in delays and dynamics,v.112197-117X ;. - Advances in delays and dynamics ;v.11..
Introduction -- Stabilization of NCSs via Discontinuous Lyapunov Functionals -- Wirtinger's Inequality and Sampled-data Control -- Networked Control under Round-Robin Protocol -- NCSs in the Presence of TOD and Round-Robin Protocols -- Networked Control with Stochastic Protocol -- Decentralized NCSs with Local Networks under TOD/Round-Robin Protocol -- Dynamic Quantization of Uncertain Linear NCSs -- Discrete-time Network-based Control under Scheduling and Actuator Constraints -- Quantized Control under Round-Robin Protocol -- Improved Stability Conditions for Discrete-time Systems under Dynamic Protocols -- Decentralized Networked Control of Discrete-time Systems with Local Networks.
This book presents a time-delay approach to the analysis and synthesis of networked control systems (NCSs) under communication constraints. Differently from other approaches, the time-delay approach to NCSs allows communication delays to be larger than the sampling intervals in the presence of scheduling protocols. The book starts from a comprehensive introduction to three main approaches to sampled-data and networked control. It then focuses on time-delay approach, and the modelling of the closed-loop systems in the form of time-delay system. It presents discontinuous (in time) Lyapunov functional constructions that are efficient for NCSs in the presence of communications delays. Further, it highlights time-delay approaches developed to model and analyze NCSs under communication constraints, with a particular focus on dynamic quantization, round-robin, try-once-discard and stochastic protocols. The results are first presented for the continuous-time NCSs and then extended to discrete-time NCSs. Discussing recent developments in Lyapunov-based analysis of NCSs under communication constraints, the book is a valuable resource for researchers interested in sampled-data and networked control, and time-delay systems, as well as for graduate students in automatic control and systems theory.
ISBN: 9789811542305
Standard No.: 10.1007/978-981-15-4230-5doiSubjects--Topical Terms:
774437
Time delay systems.
LC Class. No.: TJ223.T5 / L585 2020
Dewey Class. No.: 629.83
Networked control under communication constraints = a time-delay approach /
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This book presents a time-delay approach to the analysis and synthesis of networked control systems (NCSs) under communication constraints. Differently from other approaches, the time-delay approach to NCSs allows communication delays to be larger than the sampling intervals in the presence of scheduling protocols. The book starts from a comprehensive introduction to three main approaches to sampled-data and networked control. It then focuses on time-delay approach, and the modelling of the closed-loop systems in the form of time-delay system. It presents discontinuous (in time) Lyapunov functional constructions that are efficient for NCSs in the presence of communications delays. Further, it highlights time-delay approaches developed to model and analyze NCSs under communication constraints, with a particular focus on dynamic quantization, round-robin, try-once-discard and stochastic protocols. The results are first presented for the continuous-time NCSs and then extended to discrete-time NCSs. Discussing recent developments in Lyapunov-based analysis of NCSs under communication constraints, the book is a valuable resource for researchers interested in sampled-data and networked control, and time-delay systems, as well as for graduate students in automatic control and systems theory.
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