​
Login / Signup
Hui-Qin Xiao
ORCID
Publication Activity (10 Years)
Years Active: 2014-2024
Publications (10 Years): 8
Top Topics
Neural Network
Fuzzy Model
Control System
Stability Analysis
Top Venues
IEEE Access
IEEE Trans. Cybern.
IEEE Trans. Fuzzy Syst.
J. Frankl. Inst.
</>
Publications
</>
Wen-Qi Liao
,
Hong-Bing Zeng
,
Hui-Qin Xiao
,
Jin-Ming Liang
Synchronized Control of Chaotic Neural Networks With Actuator Saturation.
IEEE Access
12 (2024)
Wei-Min Wang
,
Hong-Bing Zeng
,
Hui-Qin Xiao
,
Wei Wang
A sampling-period-partitioning approach for stability analysis of sampled-data systems with constant delay.
J. Frankl. Inst.
359 (9) (2022)
Hui-Chao Lin
,
Wei Wang
,
Hui-Qin Xiao
Dissipativity Analysis for Neural Networks With Time-Varying Delays Based on Augmented Second-Order Delay-Product-Type Functionals.
IEEE Access
8 (2020)
Sha-Jun Zhou
,
Hong-Bing Zeng
,
Hui-Qin Xiao
Load Frequency Stability Analysis of Time-Delayed Multi-Area Power Systems With EV Aggregators Based on Bessel-Legendre Inequality and Model Reconstruction Technique.
IEEE Access
8 (2020)
Hong-Hai Lian
,
Peng Deng
,
Shen-Ping Xiao
,
Hui-Qin Xiao
New Results on Stability Analysis for Sampled-Data Control Systems With Nonuniform Sampling and Communication Delays.
IEEE Access
8 (2020)
Guan-Yu Cheng
,
Hui-Qin Xiao
,
Jian Wei Li
,
Dong Wei Zhao
,
Xiaosheng Wu
ICME Grand Challenge on Short Video Understanding.
ICME Workshops
(2019)
Hong-Bing Zeng
,
Zheng-Liang Zhai
,
Hui-Qin Xiao
,
Wei Wang
Stability Analysis of Sampled-Data Control Systems With Constant Communication Delays.
IEEE Access
7 (2019)
Hong-Hai Lian
,
Shen-Ping Xiao
,
Zhen Wang
,
Xiao-Hu Zhang
,
Hui-Qin Xiao
Further results on sampled-data synchronization control for chaotic neural networks with actuator saturation.
Neurocomputing
346 (2019)
Hui-Qin Xiao
,
Yong He
,
Min Wu
,
Shen-Ping Xiao
,
Jin-Hua She
Tracking Control Based on the T-S Fuzzy Model for Sampled-Data Networked Control System.
IEEE Trans. Fuzzy Syst.
23 (6) (2015)
Hong-Bing Zeng
,
Yong He
,
Min Wu
,
Hui-Qin Xiao
Improved Conditions for Passivity of Neural Networks With a Time-Varying Delay.
IEEE Trans. Cybern.
44 (6) (2014)