Linchuang Zhang

dblp:236/9258 · DBLP profile ↗
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11ranked-venue papers
7as first author
10since 2021 · last 2026
0000-0003-1855-3749ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Artificial intelligence and machine learning · 4 · 3 first-author · 3 since 2021Human-computer interaction and ubiquitous computing · 4 · 3 first-author · 4 since 2021Databases, data management, data science and information retrieval · 2 · 2 since 2021Applied, interdisciplinary, general and emerging computing · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2026 Multi-weight resilient event-triggered security control for nonlinear stochastic CPSs under complex asynchronous communication environments and hybrid attacks
Juanjuan Jia, Linchuang Zhang, Qingyi Zhao
Inf. Sci.2
2026 Experiential Assistance Control for a Class of Networked Stochastic Systems: A Multi-Conditions Adaptive Event-Triggered Approach
abstract
This paper studies the experiential assistance control problem for a class of networked Markov jump systems by using multi-conditions adaptive event-triggered approach. First, a novel multi-conditions adaptive event-triggered scheme is proposed to greatly reduce the data transmission rate and save network resources more effectively. Second, the experience-based assistance strategy is introduced to design a human-machine hybrid resilient controller, which can effectively reduce the impact of denial of service attacks and spoofing attacks. By combining these techniques with mode-dependentH∞performance index, we derive the desired controller solution conditions. In the end, simulation examples of DC-DC buck converter circuit model are presented to test the effectiveness, availability and advantages of the presented control method.
Linchuang Zhang, Guangdeng Chen, Hongyi Li 0001, Choon Ki Ahn
IEEE Trans Autom. Sci. Eng.1
2025 Event-based triple asynchronous switching control for fuzzy neural networks: A full-information dependent Lyapunov approach
Linchuang Zhang, Yonghui Sun
Neurocomputing2
2025 Co-design of observer-based multiple weighting event-triggered and quadruple asynchronous control for fuzzy semi-Markov jump systems
Linchuang Zhang, Wei Wang 0291, Zhechen Zhu
Inf. Sci.2
2025 Adaptive Prescribed-Time Tracking Control for Strict-Feedback Nonlinear Systems: A Novel Full Errors Approach
abstract
In this article, a novel full errors prescribed-time tracking control issue is studied for strict-feedback nonlinear systems with compounded perturbations and input constraints. The conventional error constraint methods that require adjusting 2ndesign parameters to ensure all errors enter the specified accuracy within a preassigned settling time greatly increase the complexity of controller design. By blending the modified shifting function and the barrier Lyapunov function, the presented control scheme only needs to adjustnparameters to achieve full errors prescribed-time convergence. Besides, the dead-zone input is divided into a linear term and an interference-like term. A disturbance observer is devised to estimate and compensate the compounded perturbations, including external perturbations, fuzzy approximation errors and interference-like term, which significantly enhances the accuracy of the feedback compensation mechanism. It is proved that all signals of the closed-loop system are bounded. Finally, the availability of the proposed control strategy is testified via a simulation example of an RLC circuit.
Linchuang Zhang, Jie Zhang 0163, Hongjing Liang, Yonghui Sun, Tieshan Li 0001
IEEE Trans. Syst. Man Cybern. Syst.1
2024 Two-Layer Asynchronous Control for a Class of Nonlinear Jump Systems: An Interval Segmentation Approach
abstract
This article proposes the two-layer asynchronous control scheme for a class of networked nonlinear jump systems. For the constructed system in a network environment, the data transmission may suffer from many restrictions, such as incomplete acceptable mode information and transition information, nonlinearity of system and inadequate bandwidth resources, etc. Then, the two-layer asynchronous controller is developed to stabilize the plant constructed by Takagi-Sugeno (T-S) fuzzy method and semi-Markov theory (SMT). Herein, the hidden semi-Markov process with time-varying emission probability is introduced to establish the relation between the system modes and the controller modes, in which the interval segmentation method is presented to deal with this time-varying probability. Compared with some published results, this method can make full use of the transition rate information, which may lead to the reduction of conservatism in the proposed asynchronous control design. At the same time, the limited bandwidth problem in the communication channel is addressed by introducing the bilateral quantization strategy, and the new sufficient conditions are derived on the stochastic stability of the nonlinear jump system with/without incomplete transition and sojourn-time information. Finally, the numerical simulation examples about DC motor illustrate the effectiveness and the feasibility of the proposed approach.
Linchuang Zhang, Yonghui Sun, Zhengguang Wu, Mouquan Shen, Yingnan Pan
IEEE Trans. Cybern.1
2022 Guaranteed Cost Control for Interval Type-2 Fuzzy Semi-Markov Switching Systems Within a Finite-Time Interval
abstract
This article focuses on the finite-time guaranteed cost (FTGC) control problem for interval type-2 (IT2) fuzzy semi-Markov switching systems (S-MSSs) with additive disturbances. Based on the IT2 fuzzy S-MSSs and the state feedback control method, a novel IT2 mode-dependent fuzzy guaranteed cost (GC) controller is developed under the mismatched membership functions. Then, some new sufficient conditions are given to ensure that IT2 fuzzy S-MSSs are finite-time (FT) stochastically stable based on the designed IT2 mode-dependent fuzzy GC controller. Furthermore, the transition rate boundary condition is relaxed, and a new incomplete transition rate boundary model is constructed to reflect the transition rate information. For both the incomplete transition rate boundaries and the actuator fault phenomenon, the improved stability criteria are provided to stabilize the IT2 fuzzy S-MSSs within an FT interval and determine the gains of the IT2 mode-dependent fuzzy GC controller, resulting in a much greater design flexibility. Distinct from the existing results, the presented FTGC control scheme is more suitable for many practical systems because the IT2 fuzzy S-MSS model, which is more general compared with the traditional fuzzy system and S-MSSs, is considered. Finally, three illustrative examples are offered to explain the effectiveness and feasibility of the proposed FTGC control approach.
Linchuang Zhang, Yonghui Sun, Hak-Keung Lam, Hongyi Li 0001, Jianxi Wang, Dongchen Hou
IEEE Trans. Fuzzy Syst.1
2022 Reduced-Order Fault Detection Filter Design for Fuzzy Semi-Markov Jump Systems With Partly Unknown Transition Rates
abstract
This article deals with the fault detection problem for a class of Takagi–Sugeno (T–S) fuzzy semi-Markov jump systems (FSMJSs) with partly unknown transition rates (PUTRs) subject to output quantization by designing a reduced-order filter. First, a more general PUTRs model is constructed to describe the situation that the information of some elements is completely unknown, where this model is affected simultaneously by PU information and time-varying parameter compared with the traditional PUTRs model. Second, we take full advantage of the reduced-order filter to address the fault detection problem for FSMJSs, in which the stochastic failure phenomenon is injected into the reduced-order filter. Besides, the logarithmic quantizer is employed to tackle the limited bandwidth problem in a communication channel. Consequently, the new sufficient conditions are developed based on the Lyapunov theory to obtain the desired reduced-order filter. Simulation results with respect to the tunnel diode circuit are provided to demonstrate the usefulness and availability of the established theoretical results.
Linchuang Zhang, Yonghui Sun, Yingnan Pan, Hak-Keung Lam
IEEE Trans. Syst. Man Cybern. Syst.1
2021 Containment Control of Semi-Markovian Multiagent Systems With Switching Topologies
abstract
This article is concerned with the problem of the containment control with respect to continuous-time semi-Markovian multiagent systems with semi-Markovian switching topologies. Two kinds of classical control schemes, which are dynamic containment control and static containment control schemes, are utilized to address the proposed synthesis problem. Based on the linear matrix inequality (LMI) method, the dynamic containment controller and static containment controller are designed to plunge into the studied semi-Markovian multiagent systems, respectively. Moreover, the random switching topologies with the semi-Markovian process, the partly unknown transition rates, and the generally uncertain transition rates are taken into account, which can be applicable to more practical situations. Finally, the simulation results are provided to illustrate the effectiveness of the proposed theoretical results.
Hongjing Liang, Linchuang Zhang, Yonghui Sun, Tingwen Huang
IEEE Trans. Syst. Man Cybern. Syst.2
2021 Adaptive Event-Triggered Fault Detection Scheme for Semi-Markovian Jump Systems With Output Quantization
abstract
This paper examines the adaptive event-triggered fault detection problem of semi-Markovian jump systems (S-MJSs) with output quantization. First, we develop an adaptive event-triggered scheme for S-MJSs that is more effective than conventional event-triggered strategy for decreasing network transmission information. Meanwhile, we design a new adaptive law that can dynamically adjust the event-triggered threshold. Second, we consider output signal quantization and transmission delay in the proposed fault detection scheme. Moreover, we establish novel sufficient conditions for the stochastic stability in the proposed fault detection scheme with an H∞performance with the help of linear matrix inequalities (LMIs). Finally, we provide simulation results to demonstrate the usefulness of the developed theoretical results.
Linchuang Zhang, Hongjing Liang, Yonghui Sun, Choon Ki Ahn
IEEE Trans. Syst. Man Cybern. Syst.1
2020 Fault Detection for Fuzzy Semi-Markov Jump Systems Based on Interval Type-2 Fuzzy Approach
abstract
This article studies the fault detection problem for continuous-time fuzzy semi-Markov jump systems (FSMJSs) by employing an interval type-2 (IT2) fuzzy approach. First, the continuous-time FSMJSs model is designed and the parameter uncertainty is addressed by the IT2 fuzzy approach, where the characteristic of sensor saturation is taken into account in the control system. Second, the IT2 fuzzy semi-Markov mode-dependent filter is constructed, which is employed to deal with the fault detection problem. Then, by using the Lyapunov theory, it can be guaranteed that the constructed fault detection model based on this filter and IT2 FSMJSs is stochastically stable with H∞performance. Moreover, the quantization strategy is applied to the fault detection plant to dispose of the problem of limited network bandwidth. Compared with the existing literature, the differences mainly lie in two aspects, one is that the IT2 fuzzy method is utilized for FSMJSs to tackle the parameter uncertainty of system, and the other is to detect the fault signal of IT2 FSMJSs by using the fault detection system that is constructed based on the IT2 fuzzy semi-Markov mode-dependent filter and IT2 FSMJSs. Finally, two simulation examples are provided to illustrate the effectiveness and the usefulness of the proposed theoretical method.
Linchuang Zhang, Hak-Keung Lam, Yonghui Sun, Hongjing Liang
IEEE Trans. Fuzzy Syst.1