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Co-design of Anti-windup Compensator and a Novel Saturation-based Dynamic Event-triggered Mechanism for Asymmetric Saturated System
by
Li, Hongchao
, Li, Mengfan
, Zhang, Nan
, Deng, Huimin
in
Antiwindup compensators
/ Asymmetry
/ Closed loops
/ Co-design
/ Control
/ Controllers
/ Eigenvalues
/ Engineering
/ Feedback control
/ Lower bounds
/ Mechatronics
/ Output feedback
/ Regular Papers
/ Robotics
/ 제어계측공학
2024
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Co-design of Anti-windup Compensator and a Novel Saturation-based Dynamic Event-triggered Mechanism for Asymmetric Saturated System
by
Li, Hongchao
, Li, Mengfan
, Zhang, Nan
, Deng, Huimin
in
Antiwindup compensators
/ Asymmetry
/ Closed loops
/ Co-design
/ Control
/ Controllers
/ Eigenvalues
/ Engineering
/ Feedback control
/ Lower bounds
/ Mechatronics
/ Output feedback
/ Regular Papers
/ Robotics
/ 제어계측공학
2024
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Do you wish to request the book?
Co-design of Anti-windup Compensator and a Novel Saturation-based Dynamic Event-triggered Mechanism for Asymmetric Saturated System
by
Li, Hongchao
, Li, Mengfan
, Zhang, Nan
, Deng, Huimin
in
Antiwindup compensators
/ Asymmetry
/ Closed loops
/ Co-design
/ Control
/ Controllers
/ Eigenvalues
/ Engineering
/ Feedback control
/ Lower bounds
/ Mechatronics
/ Output feedback
/ Regular Papers
/ Robotics
/ 제어계측공학
2024
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Co-design of Anti-windup Compensator and a Novel Saturation-based Dynamic Event-triggered Mechanism for Asymmetric Saturated System
Journal Article
Co-design of Anti-windup Compensator and a Novel Saturation-based Dynamic Event-triggered Mechanism for Asymmetric Saturated System
2024
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Overview
This paper addresses the co-design of anti-windup compensator and a novel saturation-based dynamic event-triggered condition for asymmetric saturated system. Asymmetric saturation frequently appears in practical systems, which may seriously degrade the system performance. For the systems with undetectable state, dynamic output feedback controller is employed in this paper. A saturation-based dynamic event-triggered mechanism related to the upper and lower bounds of asymmetric saturation is proposed in this paper, which has better performance in reducing the event-triggered number than static event-triggered condition. In addition, the minimum triggering time interval is calculated to avoid Zeno behavior. An optimization problem is formulated to maximize estimated stable region for the closed-loop system. Finally, the proposed results are illustrated by a numerical example.
Publisher
Institute of Control, Robotics and Systems and The Korean Institute of Electrical Engineers,Springer Nature B.V,제어·로봇·시스템학회
Subject
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