4.4 Article

Torque ripple and switching frequency reduction of interior permanent magnet brushless direct current motors using a novel control technique

期刊

IET POWER ELECTRONICS
卷 12, 期 14, 页码 3852-3858

出版社

INST ENGINEERING TECHNOLOGY-IET
DOI: 10.1049/iet-pel.2018.6303

关键词

air gaps; machine control; permanent magnet motors; brushless DC motors; stators; rotors; torque; interior permanent magnet; direct current motors; novel control technique; power density; PMBLDC motors; IPMBLDC motors; higher torque ripples; current waveform; IPM motors; total developed torque constant; reluctance torque ripple; switching frequency reduction

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Although interior permanent magnet brushless direct current (IPMBLDC) motors have higher torque and power density compared to surface-mounted PMBLDC motors, the reluctance torque of IPMBLDC motors generates higher torque ripples. This study introduces a new current waveform as a reference to control the IPM motors while keeping the total developed torque constant. It also helps to considerably reduce the torque ripple of the motors. The experimental results show that this method significantly reduces the damaging impact of the reluctance torque ripple without complicating computations or changing the stator and rotor structures of the motor. Additionally, the switching frequency and consequently switching losses are reduced using the proposed technique.

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