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The adaptive control algorithm enables the controller to cope with non-linearity, parameter variation with time and parameter uncertainty in rotor-bearing systems.
Unlike conventional robust model predictive control (MPC), the proposed method enables the controller design to bear more degrees of tuning so that improved tracking control can be acquired, which is very important since uncertainties exist inevitably in practice and cause model/plant mismatches.
The algorithm allows the computation of explicit control laws for LPV systems and enables the controller to exploit information about the scheduling parameter.
Moreover, MPC enables the controller to cope explicitly with MIMO plants and constraints such as state constraints and actuator constraints.
The overall design of the controller enables the controller to consider both the process state dynamics and the output dynamics, thus improved control performance for tracking set-points and disturbance rejection is resulted.
Moreover, unlike other imbalance vibration control applications based upon ABD such as rotor speed regulator [21,22], this approach enables the controller to achieve the desirable performance without altering rotor speed once the rotor initially reaches the target speed.
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The two inputs enable the controller not only to control the temperature of the coolant flowing out of the engine but the temperature of the coolant entering the engine as well.
The FTC strategy takes advantage of the proposed FDI algorithm, enabling the controller reconfiguration shortly after fault events.
Real-time tracking the above UF resistance metrics, as well as the rate of change of Δn with coagulant dose, enabled the controller to quantify the progression of both irreversible fouling and UF backwash effectiveness.
The device enabled the controller, usually Wright, to manipulate the band's amplified sound, combined with recorded tapes, projecting the sounds 270 degrees around a venue, achieving a sonic swirling effect.
These operations enable the Controller to manage and steer the individual computations across multiple models in parallel.
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CEO of Professional Science Editing for Scientists @ prosciediting.com