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A stability-instability boundary for disturbance-free slow adaptation with unmodeled dynamics
62
Citations
12
References
1985
Year
EngineeringRobust ControlParameter Adjustment GainStabilization TechniqueStabilitySufficient ConditionNumerical StabilityApproximation TheoryStability AnalysisNonlinear ControlAdaptive FilterSlow DriftMathematical Control TheoryAdaptive AlgorithmAerospace EngineeringMechanical SystemsBusinessAdaptive ControlStability-instability BoundaryVibration Control
The instability of adaptive schemes for small values of parameter adjustment gain has the form of a slow drift of adjustable parameters. With an averaging analysis we derive not only a sufficient condition for stability of this drift, but also a sufficient condition for it to be unstable. A sharp boundary between stability and instability is signal dependent and much less demanding than the usual strict positive realness property. The new positivity condition has a simple signal energy interpretation.
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