Publication | Closed Access
Guidelines for the Design of Finite Control Set Model Predictive Controllers
539
Citations
104
References
2019
Year
EngineeringPower Electronics ConverterElectric Power ConversionPower Electronic SystemsPower ElectronicsFinite ControlSystems EngineeringModel Predictive ControlPower System ControlReference TrackingPower SystemsElectrical EngineeringModel-based Control TechniqueMathematical Control TheoryComputer EngineeringController SynthesisControl DesignEnergy ManagementMechanical SystemsProcess ControlCase Studies
Direct model predictive control (MPC) with reference tracking, also referred to as finite control set MPC (FCS-MPC), has gained significant attention in recent years, mainly from the academic community. Thanks to its applicability to a wide range of power electronic systems, it is considered a promising control method for such systems. However, to simplify the design, researchers frequently make choices that-often unknowingly-reduce the system performance. In this article, we discuss and analyze the factors that affect the closed-loop performance of FCS-MPC. Based on these findings, design guidelines are provided that help to maximize the system performance. To highlight the performance benefits, two case studies will be considered: the first one consists of a two-level converter and an induction machine, whereas the second one adds an LC filter between the converter and the machine.
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