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Dynamic games approach to controller design: Disturbance rejection in discrete time
Tamer Basar
Electrical and Computer Engineering
Coordinated Science Lab
Research output
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peer-review
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Dive into the research topics of 'Dynamic games approach to controller design: Disturbance rejection in discrete time'. Together they form a unique fingerprint.
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Keyphrases
Discrete-time
100%
Controller
100%
Controller Design
100%
Game Approach
100%
Dynamic Games
100%
Disturbance Rejection
100%
Minimax
33%
Stochastic Processes
33%
Performance Bounds
33%
State Observation
33%
Disturbance Attenuation
33%
Energy Bounds
33%
Infinite Horizon
33%
Linear Controller
33%
Linear Quadratic
33%
Worst-case Disturbance
33%
Higher-order Moments
33%
Direct Use
33%
Discrete Distribution
33%
Pure Strategy
33%
Zero-sum Dynamics
33%
Engineering
Discrete Time
100%
Controller Design
100%
Energy Engineering
50%
Illustrates
50%
Numerical Study
50%
State Measurement
50%
Saddle Point
50%
Main Result
50%
Linear Controller
50%
Pure Strategy
50%
Random Sequence
50%