Model Predictive Control of Quasi-Z-Source Four-Leg Inverter

This paper presents a model predictive control (MPC) scheme for quasi-Z-source (qZS) three-phase four-leg inverter. In order to cope with the drawbacks of traditional voltage source inverters (VSIs), a qZS three-phase four-leg inverter topology is proposed. This topology features a wide range of vol...

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Veröffentlicht in:IEEE transactions on industrial electronics (1982) 2016-07, Vol.63 (7), p.4506-4516
Hauptverfasser: Bayhan, Sertac, Abu-Rub, Haitham, Balog, Robert S.
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creator Bayhan, Sertac
Abu-Rub, Haitham
Balog, Robert S.
description This paper presents a model predictive control (MPC) scheme for quasi-Z-source (qZS) three-phase four-leg inverter. In order to cope with the drawbacks of traditional voltage source inverters (VSIs), a qZS three-phase four-leg inverter topology is proposed. This topology features a wide range of voltage gain which is suitable for applications in renewable energy-based power systems, where the output of the renewable energy sources varies widely with operating conditions such as wind speed, temperature, and solar irradiation. To improve the capability of the controller, an MPC scheme is used which implements a discrete-time model of the system. The controller handles each phase current independently, which adds flexibility to the system. Simulation and experimental studies verify the performances of the proposed control strategy under balanced and unbalanced load conditions as well as single-phase open-circuit fault condition.
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source IEEE Electronic Library (IEL)
subjects Computer simulation
Controllers
DC−AC power conversion
Electric potential
four-leg inverter
Inverters
Mathematical model
Mathematical models
Model predictive control
Network topology
Phase current
Predictive control
quasi-Z-source inverter (qZSI)
Reliability
Renewable energy sources
Switches
Topology
title Model Predictive Control of Quasi-Z-Source Four-Leg Inverter
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