2023 - Research.com Electronics and Electrical Engineering in China Leader Award
The scientist’s investigation covers issues in Control theory, Stability, Linear matrix inequality, Upper and lower bounds and Mathematical optimization. His work on Lyapunov function, Delay dependent and Exponential stability as part of his general Control theory study is frequently connected to Weighting, thereby bridging the divide between different branches of science. Yong He interconnects PID controller and Multivariable calculus in the investigation of issues within Stability.
His Linear matrix inequality research integrates issues from Stability criterion, Linear system, Control, Output feedback and Iterative method. His work deals with themes such as Control theory, Lemma, Bounding overwatch and Inequality, which intersect with Mathematical optimization. His work carried out in the field of Artificial neural network brings together such families of science as Derivative and Nonlinear system.
His primary areas of study are Control theory, Stability, Linear matrix inequality, Stability criterion and Artificial neural network. His research in Control theory intersects with topics in Upper and lower bounds, Derivative and Mathematical optimization. The concepts of his Stability study are interwoven with issues in Fuzzy control system and Multiple integral.
His Linear matrix inequality research is multidisciplinary, incorporating elements of Control system, Control theory, Robust control and Linear system. Yong He has included themes like Automatic frequency control, Numerical stability, Type and Special case in his Stability criterion study. His Artificial neural network research incorporates themes from Exponential stability, Interval and Applied mathematics.
His primary scientific interests are in Control theory, Applied mathematics, Stability criterion, Automatic frequency control and Electric power system. His work investigates the relationship between Control theory and topics such as Filter design that intersect with problems in Nonlinear system. His Applied mathematics research is multidisciplinary, relying on both Artificial neural network, State and Linear system.
The various areas that Yong He examines in his Stability criterion study include Stability, Auxiliary function, Derivative, Exponential stability and Lemma. His study looks at the relationship between Automatic frequency control and topics such as Robustness, which overlap with Lyapunov function. His Electric power system study combines topics in areas such as Linear matrix inequality and Electronic engineering.
Applied mathematics, Control theory, Stability criterion, Symmetric matrix and Discrete time and continuous time are his primary areas of study. His Applied mathematics research includes themes of Automatic frequency control, Linear system, LKFS and Electric power system. His studies in LKFS integrate themes in fields like Stability, Bessel's inequality, Derivative, Type and Multiple integral.
Yong He frequently studies issues relating to Interval and Control theory. Yong He has researched Stability criterion in several fields, including Decision variables, Polynomial, Lemma and Special case. The study incorporates disciplines such as Artificial neural network, State, Bounded function and Lyapunov stability in addition to Discrete time and continuous time.
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Technical Communique: Delay-dependent criteria for robust stability of time-varying delay systems
Min Wu;Yong He;Jin-Hua She;Guo-Ping Liu.
Automatica (2004)
Technical Communique: Delay-dependent criteria for robust stability of time-varying delay systems
Min Wu;Yong He;Jin-Hua She;Guo-Ping Liu.
Automatica (2004)
Technical communique: Delay-range-dependent stability for systems with time-varying delay
Yong He;Qing-Guo Wang;Chong Lin;Min Wu.
Automatica (2007)
Technical communique: Delay-range-dependent stability for systems with time-varying delay
Yong He;Qing-Guo Wang;Chong Lin;Min Wu.
Automatica (2007)
Parameter-dependent Lyapunov functional for stability of time-delay systems with polytopic-type uncertainties
Yong He;Min Wu;Jin-Hua She;Guo-Ping Liu.
IEEE Transactions on Automatic Control (2004)
Parameter-dependent Lyapunov functional for stability of time-delay systems with polytopic-type uncertainties
Yong He;Min Wu;Jin-Hua She;Guo-Ping Liu.
IEEE Transactions on Automatic Control (2004)
Further Improvement of Free-Weighting Matrices Technique for Systems With Time-Varying Delay
Yong He;Qing-Guo Wang;Lihua Xie;Chong Lin.
IEEE Transactions on Automatic Control (2007)
Further Improvement of Free-Weighting Matrices Technique for Systems With Time-Varying Delay
Yong He;Qing-Guo Wang;Lihua Xie;Chong Lin.
IEEE Transactions on Automatic Control (2007)
Delay-dependent robust stability criteria for uncertain neutral systems with mixed delays
Yong He;Min Wu;Jin-Hua She;Guo-Ping Liu;Guo-Ping Liu.
Systems & Control Letters (2004)
Delay-dependent robust stability criteria for uncertain neutral systems with mixed delays
Yong He;Min Wu;Jin-Hua She;Guo-Ping Liu;Guo-Ping Liu.
Systems & Control Letters (2004)
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