2006IEEE Transactions on MagneticsRequires access

Minimizing the Influence of Cogging Torque on Vibration of PM Brushless Machines by Direct Torque Control

Z. Q. Zhu, Y. Liu, D. Howe

Open publisher page 59 citations

Abstract

Direct torque control (DTC) is employed to minimize the influence of the cogging torque on the vibrational behavior of a PM brushless machine. Simulated and measured results, both with and without cogging torque compensation, show that DTC is effective in compensating for the influence of cogging torque provided it is taken into account in the torque estimation. The method results in a simple and effective control algorithm and significantly reduces torque ripple and vibration

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What this paper is about

Direct torque control (DTC) is employed to minimize the influence of the cogging torque on the vibrational behavior of a PM brushless machine. Simulated and measured results, both with and without cogging torque compensation, show that DTC is effective in compensating for the influence of cogging torque provided it is taken into account in the torque estimation. The method results in a simple and effective control algorithm and significantly reduces torque ripple and vibration

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Available abstract

Direct torque control (DTC) is employed to minimize the influence of the cogging torque on the vibrational behavior of a PM brushless machine. Simulated and measured results, both with and without cogging torque compensation, show that DTC is effective in compensating for the influence of cogging torque provided it is taken into account in the torque estimation. The method results in a simple and effective control algorithm and significantly reduces torque ripple and vibration

Key concepts: Cogging torque, Direct torque control, Damping torque, Control theory (sociology), Torque ripple, Torque, Stall torque, Torque limiter

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