His primary scientific interests are in Stability, Mathematical optimization, Linear matrix inequality, Control theory and Lemma. His study of Stability brings together topics like Convex combination and Symmetric matrix. In his articles, Chuan-Ke Zhang combines various disciplines, including Mathematical optimization and Term.
Much of his study explores Linear matrix inequality relationship to Stability criterion. His work on Delay dependent as part of general Control theory study is frequently linked to Upper and lower bounds, therefore connecting diverse disciplines of science. His Automatic frequency control research incorporates elements of Time delays and Control theory, Robust control, Robustness.
Chuan-Ke Zhang mainly investigates Control theory, Stability, Stability criterion, Automatic frequency control and Artificial neural network. In the subject of general Control theory, his work in Control theory, Linear matrix inequality and Control system is often linked to Term and Derivative, thereby combining diverse domains of study. His Linear matrix inequality research is multidisciplinary, incorporating elements of Uncertain systems and Lemma.
His research in Stability intersects with topics in Mathematical optimization and Fuzzy control system. The Mathematical optimization study combines topics in areas such as Time delays and Bounding overwatch. His Stability criterion study combines topics in areas such as Lyapunov function and Circle criterion.
Chuan-Ke Zhang mainly focuses on Control theory, Automatic frequency control, Electric power system, Stability criterion and Applied mathematics. His Control system, Stability and Linear system study in the realm of Control theory interacts with subjects such as Convex combination and Signature. Chuan-Ke Zhang interconnects State vector, Compensation and Fuzzy control system in the investigation of issues within Stability.
Chuan-Ke Zhang focuses mostly in the field of Automatic frequency control, narrowing it down to matters related to Linear matrix inequality and, in some cases, Lyapunov function. Many of his studies on Stability criterion apply to Lemma as well. His Applied mathematics research integrates issues from Artificial neural network and Discrete time and continuous time.
Chuan-Ke Zhang spends much of his time researching Applied mathematics, Symmetric matrix, Control theory, Linear system and Quadratic function. His Applied mathematics study incorporates themes from Artificial neural network and Discrete time and continuous time. His Symmetric matrix research incorporates elements of Functional Method, Compensation, State vector, Fuzzy control system and Stability.
His Linear system research is multidisciplinary, incorporating elements of LKFS and Lyapunov krasovskii. His Quadratic function investigation overlaps with other disciplines such as Decision variables, Stability criterion, Special case and Lemma. As a part of the same scientific family, Chuan-Ke Zhang mostly works in the field of Decision variables, focusing on Automatic frequency control and, on occasion, Discretization and Frequency response.
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Delay-Dependent Robust Load Frequency Control for Time Delay Power Systems
Chuan-Ke Zhang;L. Jiang;Q. H. Wu;Yong He.
IEEE Transactions on Power Systems (2013)
An extended reciprocally convex matrix inequality for stability analysis of systems with time-varying delay
Chuan-Ke Zhang;Chuan-Ke Zhang;Yong He;Lin Jiang;Min Wu.
Automatica (2017)
Stability analysis of systems with time-varying delay via relaxed integral inequalities
Chuan-Ke Zhang;Chuan-Ke Zhang;Yong He;Lin Jiang;Min Wu.
Systems & Control Letters (2016)
Notes on Stability of Time-Delay Systems: Bounding Inequalities and Augmented Lyapunov-Krasovskii Functionals
Chuan-Ke Zhang;Yong He;Lin Jiang;Min Wu.
IEEE Transactions on Automatic Control (2017)
Delay-dependent stability analysis of neural networks with time-varying delay
Chuan-Ke Zhang;Yong He;Lin Jiang;Wen-Juan Lin.
Applied Mathematics and Computation (2017)
Stability Analysis for Delayed Neural Networks Considering Both Conservativeness and Complexity
Chuan-Ke Zhang;Yong He;Lin Jiang;Min Wu.
IEEE Transactions on Neural Networks (2016)
Delay-Dependent Stability Criteria for Generalized Neural Networks With Two Delay Components
Chuan-Ke Zhang;Yong He;L. Jiang;Q. H. Wu.
IEEE Transactions on Neural Networks (2014)
Further Results on Delay-Dependent Stability of Multi-Area Load Frequency Control
Chuan-Ke Zhang;L. Jiang;Q. H. Wu;Yong He.
IEEE Transactions on Power Systems (2013)
Stability Analysis of Discrete-Time Neural Networks With Time-Varying Delay via an Extended Reciprocally Convex Matrix Inequality
Chuan-Ke Zhang;Yong He;Lin Jiang;Qing-Guo Wang.
IEEE Transactions on Systems, Man, and Cybernetics (2017)
Delay-Variation-Dependent Stability of Delayed Discrete-Time Systems
Chuan-Ke Zhang;Yong He;L. Jiang;Min Wu.
IEEE Transactions on Automatic Control (2016)
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