International Journal of Control · 2007 · 87 citations · 19 references
Mathematical Control TheoryEngineeringRobust ControlMechatronicsMechanical SystemsProcess ControlState-derivative FeedbackSystems EngineeringBusinessMultivariable Linear SystemsControl DesignDecay RateNonlinear Vibration ControlVibration ControlLinear ControlStability
In some practical problems, for instance in the control systems for the suppression of vibration in mechanical systems, the state-derivative signals are easier to obtain than the state signals. New necessary and sufficient linear matrix inequalities (LMI) conditions for the design of state-derivative feedback for multi-input (MI) linear systems are proposed. For multi-input/multi-output (MIMO) linear time-invariant or time-varying plants, with or without uncertainties in their parameters, the proposed methods can include in the LMI-based control designs the specifications of the decay rate, bounds on the output peak, and bounds on the state-derivative feedback matrix K. These design procedures allow new specifications and also, they consider a broader class of plants than the related results available in the literature. The LMIs, when feasible, can be efficiently solved using convex programming techniques. Practical applications illustrate the efficiency of the proposed methods.
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Proceedings of the 2004 American Control Conference
2004 · 2.6K citations
Robust output-feedback controller design via local BMI optimization
Stoyan Kanev, Carsten W. Scherer, Michel Verhaegen et al. · Automatica · 2004 · 186 citations