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Analysis of direct torque control in permanent magnet synchronous motor drives

IEEE Transactions on Power Electronics · 1997 · Vol. 12(3) · pp. 528–536
L. ZhongM.F. RahmanWei HuK.W. Lim

Abstract

This paper describes an investigation of direct torque control (DTC) for permanent magnet synchronous motor (PMSM) drives. It is mathematically proven that the increase of electromagnetic torque in a permanent magnet motor is proportional to the increase of the angle between the stator and rotor flux linkages, and, therefore, the fast torque response can be obtained by adjusting the rotating speed of the stator flux linkage as fast as possible. It is also shown that the zero voltage vectors should not be used, and stator flux linkage should be kept moving with respect to the rotor flux linkage all the time. The implementation of DTC in the permanent magnet motor is discussed, and it is found that for DTC using available digital signal processors (DSPs), it is advantageous to have a motor with a high ratio of the rated stator flux linkage to stator voltage. The simulation results verify the proposed control and also show that the torque response under DTC is much faster than the one under current control.

Sensorless Control of Electric MotorsElectric Motor Design and AnalysisMultilevel Inverters and ConvertersDirect torque controlFlux linkageControl theory (sociology)Vector controlStatorRotor (electric)Torque motorTorqueSynchronous motorMagnet
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Cited by
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References
A New Quick-Response and High-Efficiency Control Strategy of an Induction Motor
IEEE Transactions on Industry Applications · 1986 · 3,385 citations
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