Publication | Closed Access
Design of a Prediction-Accuracy-Enhanced Continuous-Time MPC for Disturbed Systems via a Disturbance Observer
233
Citations
39
References
2015
Year
Disturbance ObserverDisturbed SystemsEngineeringState ObserverAerospace EngineeringPrediction-accuracy-enhanced Continuous-time MpcRobust ControlModel-based Control TechniqueMechanical SystemsProcess ControlBusinessSystems EngineeringDisturbance EstimationDisturbance DetectionModel Predictive ControlVibration ControlObserver Design
This paper addresses the prediction accuracy enhancement problem in the context of continuous-time model predictive control (MPC) by using a disturbance observer. The disturbance estimation is introduced in the output prediction to correct the errors caused by disturbances and uncertainties, which eventually leads to the desired offset-free tracking performance. Due to such a different design philosophy, the computational burden of the proposed method will be significantly reduced as compared with the existing offset-free MPCs for disturbed systems. Another promising feature of the proposed method lies in its nominal performance recovery property. The workability of the proposed method is validated by its application to a dc-dc buck converter system.
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