Publication | Closed Access
Robust, fragile or optimal?
140
Citations
6
References
1997
Year
Unknown Venue
Mathematical ProgrammingEngineeringRobust ControlClosed Loop SystemRobustness TestingSmall PerturbationsStabilityUncertainty QuantificationSystems EngineeringRobust OptimizationReliabilityMathematical Control TheoryControl DesignRobust DesignControllabilityMechanical SystemsProcess ControlBusinessFragile ControllersVibration ControlLinear Control
We show by examples that optimum and robust controllers, designed by using the H/sub 2/, H/sub /spl infin//, l/sup 1/ and /spl mu/ formulations, can produce extremely fragile controllers, in the sense that vanishingly small perturbations of the coefficients of the designed controller destabilize the closed loop control system. The examples show that this fragility also usually manifests itself as extremely poor gain and phase margins of the closed loop system.
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