학술논문

Sequential Predictive Torque Control of a Six-Phase Induction Machine fed by a Multi-Modular Direct Matrix Converter
Document Type
Conference
Source
2023 IEEE 2nd Industrial Electronics Society Annual On-Line Conference (ONCON) On-Line Conference (ONCON), 2023 IEEE 2nd Industrial Electronics Society Annual. :1-6 Dec, 2023
Subject
Components, Circuits, Devices and Systems
Computing and Processing
General Topics for Engineers
Robotics and Control Systems
Signal Processing and Analysis
Torque
Monte Carlo methods
Voltage source inverters
Torque control
Stators
Induction machines
Matrix converters
Induction machine
direct matrix converter
model predictive control
predictive torque control
six-phase machine
speed control
weighting factor
Language
Abstract
Multiphase induction machines, known for their higher torque density, improved fault tolerance, and reduced harmonic losses, are well-suited for high-power applications. This paper presents a sequential model predictive torque control approach for a multi-modular direct matrix converter-driven six-phase induction machine. The direct matrix converter offers advantages such as direct AC-AC conversion, unity power factor operation, and low harmonic distortion. Simulation studies demonstrate the effectiveness of the proposed control scheme in achieving accurate reference tracking for torque, flux, and stator currents. This research advances MPC-based control strategies for DMC applications in multiphase machines.