Journal ArticleDOI
Sliding mode control of hybrid switched systems via an event-triggered mechanism
TLDR
An event-triggered sliding mode control law is developed to drive the resultant closed-loop system trajectories into a bounded switched region and maintain them therein for subsequent periods.About:
This article is published in Automatica.The article was published on 2018-04-01. It has received 201 citations till now. The article focuses on the topics: Sliding mode control & Lyapunov function.read more
Citations
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Journal ArticleDOI
Event-triggered sliding mode control of uncertain switched systems under denial-of-service attacks
TL;DR: This study is concerned with the event-triggered sliding mode control problem for a class of cyber-physical switched systems, in which the Denial of Service attacks may randomly occur according to the Bernoulli distribution.
Journal ArticleDOI
Event-Triggered Fuzzy Control for Nonlinear Systems via Sliding Mode Approach
TL;DR: This article addresses the problem of continuous-time dynamic sliding mode control for Takagi–Sugeno fuzzy nonlinear systems based on an event-triggered mechanism by establishing a novel sliding mode dynamic system and developing a new Lyapunov function and reciprocally convex method.
Journal ArticleDOI
Event-Triggered Neural Control of Nonlinear Systems With Rate-Dependent Hysteresis Input Based on a New Filter
TL;DR: In this paper, a second-order filter is proposed to overcome the design conflict between the quantized networked control signal and the rate-dependent hysteresis characteristics, and a novel adaptive control strategy is developed from a neural network technique and a modified backstepping recursive design.
Journal ArticleDOI
Non-fragile delay feedback control for neutral stochastic Markovian jump systems with time-varying delays
TL;DR: The main aim is to design non-fragile and mode-dependent delay feedback controller (DFC) both in the drift part and in the diffusion part to realize closed-loop NSMJS is stochastically stable.
Journal ArticleDOI
Synchronization of stochastic hybrid coupled systems with multi-weights and mixed delays via aperiodically adaptive intermittent control
Sen Li,Congying Lv,Xiaohua Ding +2 more
TL;DR: Because of using the established differential inequalities, the conditions on the delay-related parameters affecting the exponential convergence rate are weakened, which results in the exponential synchronization criteria obtained in this paper being less conservative than those in the existing literature.
References
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Journal ArticleDOI
Fault Detection Filtering for Nonlinear Switched Stochastic Systems
TL;DR: The fault detection filtering problem is solved for nonlinear switched stochastic system in the T-S fuzzy framework and the fuzzy-parameter-dependent fault detection filters are designed that guarantee the resulted error system to be mean-square exponential stable with a weighted H∞ error performance.
Journal ArticleDOI
Event-triggered sliding mode control of stochastic systems via output feedback ☆
TL;DR: The presented event-triggered SMC methods are successfully applied to multi-loop control case considering shared communication limitation and the stochastic stability for the overall closed-loop system is analyzed.
Journal ArticleDOI
Output-Based and Decentralized Dynamic Event-Triggered Control With Guaranteed $\mathcal{L}_{p}$- Gain Performance and Zeno-Freeness
TL;DR: A novel event-triggered control (ETC) strategy for a class of nonlinear feedback systems is proposed that can simultaneously guarantee a finite Lp-gain and a strictly positive lower bound on the inter-event times.
Journal ArticleDOI
H−/H∞ fault detection filter design for discrete-time Takagi–Sugeno fuzzy system
TL;DR: The idea is to formulate the robust fault detection observer design as an H − / H ∞ problem based on nonquadratic Lyapunov functions, and a solution of the considered problem is given via a Linear Matrix Inequality ( LMI ) formulation.
Journal ArticleDOI
Event-Triggering Load Frequency Control for Multiarea Power Systems With Communication Delays
TL;DR: This paper studies the load frequency control for power systems with communication delays via an event-triggered control method to reduce the amount of communications required and develops a new model of the LFC scheme with delays.