Martin Corless spends much of his time researching Control theory, Nonlinear system, Dynamical systems theory, Applied mathematics and Uncertain systems. The Control theory study combines topics in areas such as Class and Quadratic equation. Martin Corless has researched Class in several fields, including State, Mathematical optimization and Bounding overwatch.
Many of his research projects under Nonlinear system are closely connected to Attenuation with Attenuation, tying the diverse disciplines of science together. His Dynamical systems theory research is multidisciplinary, relying on both Exponential stability and Theory of computation. The Uncertain systems study combines topics in areas such as Controller design, Stability, Lyapunov exponent and Quadratic lyapunov function.
The scientist’s investigation covers issues in Control theory, Nonlinear system, Lyapunov function, Applied mathematics and Linear system. His work carried out in the field of Control theory brings together such families of science as Control engineering and Bounded function. His Robust control and Nonlinear control study, which is part of a larger body of work in Nonlinear system, is frequently linked to Multiplier, bridging the gap between disciplines.
His Lyapunov function research focuses on subjects like Mathematical analysis, which are linked to Matrix exponential. Martin Corless combines subjects such as Stability and Exponential stability with his study of Applied mathematics. The various areas that he examines in his Linear system study include Class and Adaptive control.
Martin Corless mostly deals with Control theory, Nonlinear system, Mathematical optimization, Descriptor systems and Discrete time and continuous time. Martin Corless has researched Control theory in several fields, including Class and Symmetric matrix. His study in Nonlinear system is interdisciplinary in nature, drawing from both Quadratic equation and State.
His Mathematical optimization research is multidisciplinary, incorporating perspectives in Laplacian matrix and Group. The study incorporates disciplines such as Stability, Output feedback, Frequency domain, Applied mathematics and Stability conditions in addition to Descriptor systems. Martin Corless works mostly in the field of Discrete time and continuous time, limiting it down to topics relating to Equilibrium point and, in certain cases, Selection, Mutation, Genetics, Stability and Lyapunov function, as a part of the same area of interest.
Martin Corless mainly focuses on Control theory, Mathematical optimization, Nonlinear system, Symmetric matrix and Bounded function. Martin Corless interconnects Class, Stability conditions and Dimensionality reduction in the investigation of issues within Control theory. His Mathematical optimization research incorporates themes from Constraint and Markov chain.
His Block matrix research extends to Nonlinear system, which is thematically connected. Martin Corless has included themes like Algorithm, Least squares and System of linear equations in his Symmetric matrix study. His Bounded function study combines topics in areas such as Quadratic equation, State, State observer and Generalization.
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Continuous state feedback guaranteeing uniform ultimate boundedness for uncertain dynamic systems
M. Corless;G. Leitmann.
IEEE Transactions on Automatic Control (1981)
A New Class of Stabilizing Controllers for Uncertain Dynamical Systems
B. R. Barmish;M. Corless;G. Leitmann.
Siam Journal on Control and Optimization (1983)
State and input estimation for a class of uncertain systems
Martin Corless;Jay Tu.
Comparative study of non-linear state-observation techniques
B. L. Walcott;M. J. Corless;S. H. Żak.
International Journal of Control (1987)
Ultimate Boundedness and Asymptotic Stability of a Class of Uncertain Dynamical Systems via Continuous and Discontinuous Feedback Control
E. P. Ryan;M. Corless.
Ima Journal of Mathematical Control and Information (1984)
Control of Uncertain Nonlinear Systems
Journal of Dynamic Systems Measurement and Control-transactions of The Asme (1993)
Adaptive control of systems containing uncertain functions and unknown functions with uncertain bounds
M. Corless;G. Leitmann.
Journal of Optimization Theory and Applications (1983)
Paper: A novel approach to the attitude control of axisymmetric spacecraft
P. Tsiotras;M. Corless;J. M. Longuski.
Output feedback stabilization of uncertain dynamical systems
A. Steinberg;M. Corless.
IEEE Transactions on Automatic Control (1985)
Linear systems and control : an operator perspective
Martin J. Corless;Arthur E. Frazho.
Profile was last updated on December 6th, 2021.
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