Journal Article

·2008

Torque Ripple and EMI Noise Minimization in PMSM Using Active Filter Topology and Field-Oriented Control

Kayhan Gülez YTU , Ali Ahmed Adam YTU , Halit Pastaci YTU

IEEE Transactions on Industrial Electronics

Abstract

This paper proposes an active filter (AF) topology to reduce the torque ripple and harmonic noises in a permanent-magnet synchronous motor. The topology consists of an insulated-gate bipolar transistor AF and two resistance-inductance-capacitance high-pass electromagnetic interference (EMI) noise filters, i.e., one in the primary and the other in the secondary circuit of the coupling 1:1 transformer. The AF is characterized by detecting the harmonics in the motor phase voltages by comparing the measured phase values with the reference voltages generated as a function of the motor parameters and control setting values under field-oriented control. The AF uses the hysteresis voltage control method, while the motor main circuit uses the hysteresis current control method; thus, the two control methods independently work together to provide an almost sinusoidal voltage to the motor windings. The simulation results show total harmonic distortion drops of greater than 13% with EMI noise damping down to ~-10 dB as well as considerable reduction in torque ripple.

Keywords

Control theory (sociology) Torque ripple Harmonics Total harmonic distortion Engineering Topology (electrical circuits) Direct torque control Electronic engineering Induction motor Computer science Voltage Electrical engineering

Subject Areas

Electric Motor Design and Analysis ·Electrical and Electronic Engineering ·Physical Sciences
Magnetic Properties and Applications ·Electronic, Optical and Magnetic Materials ·Physical Sciences
Electromagnetic Compatibility and Noise Suppression ·Electrical and Electronic Engineering ·Physical Sciences

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