Publication | Closed Access
Model-independent nonlinear control algorithm with application to a liquid bridge experiment
22
Citations
16
References
1998
Year
Unstable StatesNonlinear System IdentificationNonlinear ControlEngineeringModel-based Control TechniqueUnstable FlowRandom PerturbationsMechanical SystemsProcess ControlSystems EngineeringControl DesignModeling And SimulationLiquid Bridge ExperimentComputational MechanicsVibration ControlNonlinear Mechanical SystemStability
We present a control method for high-dimensional nonlinear dynamical systems that can target remote unstable states without a priori knowledge of the underlying dynamical equations. The algorithm constructs a high-dimensional look-up table based on the system's responses to a sequence of random perturbations. The method is demonstrated by stabilizing unstable flow of a liquid bridge surface-tension-driven convection experiment that models the float zone refining process. Control of the dynamics is achieved by heating or cooling two thermoelectric Peltier devices placed in the vicinity of the liquid bridge surface. The algorithm routines along with several example programs written in the MATLAB language can be found at ftp://ftp.mathworks.com/pub/contrib/v5/control/nlcontrol.
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