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H_∞ synchronization of chaotic Hopfield networks with time-varying delay: a resilient DOF control approach

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【作者】 黄鑫周幼美孔庆凯周建平方木云

【Author】 Xin Huang;Youmei Zhou;Qingkai Kong;Jianping Zhou;Muyun Fang;School of Computer Science & Technology, Anhui University of Technology;Department of Electrical Engineering, Yeungnam University;School of Electrical & Information Engineering, Anhui University of Technology;Research Institute of Information Technology, Anhui University of Technology;

【机构】 School of Computer Science & Technology, Anhui University of TechnologyDepartment of Electrical Engineering, Yeungnam UniversitySchool of Electrical & Information Engineering, Anhui University of TechnologyResearch Institute of Information Technology, Anhui University of Technology

【摘要】 This paper focuses on the issue of resilient dynamic output-feedback(DOF) control for H_∞ synchronization of chaotic Hopfield networks with time-varying delay. The aim is to determine a DOF controller with gain perturbations ensuring that the H_∞ norm from the external disturbances to the synchronization error is less than or equal to a prescribed bound. A delaydependent criterion for the H_∞ synchronization is derived by employing the Lyapunov functional method together with some recent inequalities. Then, with the help of some decoupling techniques, sufficient conditions on the existence of the resilient DOF controller are developed for both the time-varying and constant time-delay cases. Lastly, an example is used to illustrate the applicability of the results obtained.

【Abstract】 This paper focuses on the issue of resilient dynamic output-feedback(DOF) control for H_∞ synchronization of chaotic Hopfield networks with time-varying delay. The aim is to determine a DOF controller with gain perturbations ensuring that the H_∞ norm from the external disturbances to the synchronization error is less than or equal to a prescribed bound. A delaydependent criterion for the H_∞ synchronization is derived by employing the Lyapunov functional method together with some recent inequalities. Then, with the help of some decoupling techniques, sufficient conditions on the existence of the resilient DOF controller are developed for both the time-varying and constant time-delay cases. Lastly, an example is used to illustrate the applicability of the results obtained.

【基金】 supported by the Natural Science Foundation of the Anhui Higher Education Institutions(Grant Nos.KJ2017A064 and KJ2018ZD007);the Excellent Youth Talent Support Program of Universities in Anhui Province(Grant No.GXYQZD2019021);the National Natural Science Foundation of China(Grant No.61503002)
  • 【文献出处】 Communications in Theoretical Physics ,理论物理(英文版) , 编辑部邮箱 ,2020年01期
  • 【分类号】O415.5;TP183;TP13
  • 【被引频次】1
  • 【下载频次】33
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