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Huaicheng Yan

Researcher at East China University of Science and Technology

Publications -  316
Citations -  6933

Huaicheng Yan is an academic researcher from East China University of Science and Technology. The author has contributed to research in topics: Computer science & Control theory (sociology). The author has an hindex of 35, co-authored 166 publications receiving 4128 citations. Previous affiliations of Huaicheng Yan include China University of Geosciences (Wuhan) & East China Jiaotong University.

Papers
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Adaptive Event-Triggered Transmission Scheme and $H_{\infty}$ Filtering Co-Design Over a Filtering Network With Switching Topology

TL;DR: This paper addresses the distributed adaptive event-triggered filtering problem for a class of sector-bounded nonlinear system over a filtering network with time-varying and switching topology by introducing the dynamic threshold parameter, which provides benefits in data scheduling.
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A Novel Sliding Mode Estimation for Microgrid Control With Communication Time Delays

TL;DR: A novel sliding mode estimation-based controller is designed to predict time delays and microgrid states, and to reject the disturbance of estimation errors by regarding estimation errors as disturbance of sliding mode control (SMC).
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Decentralized event-triggered consensus control for second-order multi-agent systems

TL;DR: The second-order multi-agent systems consensus problem is investigated by decentralized event-triggered control by focusing on the ratio of a defined measurement error relative to the norm of a state function.
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Quantized Output Feedback Control for Stochastic Semi-Markov Jump Systems With Unreliable Links

TL;DR: The purpose is to synthesize an OF controller, which ensures that the closed-loop system is mean-square $\sigma $ -error stable, and some sojourn time-dependent criteria are established for the realizability of admissible OF controller.
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Event-Based Security Control for Stochastic Networked Systems Subject to Attacks

TL;DR: The aim of this paper is to design a dynamic output feedback controller that achieves the described security in probability, and some novel sufficient conditions are proposed to guarantee the input-to-state stability of the system in probability.