A unified flux and torque control method for DTC-based induction-motor drives
Joon Hyoung Ryu, Kwang‐Won Lee, Ja Sung Lee
Abstract
Joon Hyoung Ryu, Kwang‐Won Lee, Ja Sung Lee
Abstract
In the direct torque control (DTC) of induction motor, flux linkage and electromagnetic torque are controlled directly by the selection of switching vector from a look-up table. However, the selected vector is not always the best one since only the sector is considered where the flux linkage space vector lies without considering its accurate location. This paper presents a unified flux and torque control method for DTC-based induction-motor drives, where the flux and torque errors are geometrically put together to make a reference stator voltage vector in a deadbeat fashion. The look-up table in the DTC is replaced by a minimum-distance vector selection scheme for a better choice of the stator voltage to reduce the flux and torque ripples. Simulation results show that the proposed algorithm effectively reduces the flux and torque ripple.
OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
In the direct torque control (DTC) of induction motor, flux linkage and electromagnetic torque are controlled directly by the selection of switching vector from a look-up table. However, the selected vector is not always the best one since only the sector is considered where the flux linkage space vector lies without considering its accurate location. This paper presents a unified flux and torque control method for DTC-based induction-motor drives, where the flux and torque errors are geometrically put together to make a reference stator voltage vector in a deadbeat fashion. The look-up table in the DTC is replaced by a minimum-distance vector selection scheme for a better choice of the stator voltage to reduce the flux and torque ripples. Simulation results show that the proposed algorithm effectively reduces the flux and torque ripple.
Key concepts: Direct torque control, Vector control, Flux linkage, Control theory (sociology), Torque, Induction motor, Stator, Stall torque