An Active Common-Mode Voltage Compensation Method for Three-Phase Induction Motor Drives

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초록

Pulse Width Modulated (PWM) voltage source inverters are widely used to power induction motors in industrial applications. However, they generate common-mode voltage (CMV), which induces high shaft voltages and bearing currents, leading to premature motor failures. This paper proposes a novel active cancellation method to compensate for the CMV in high-voltage induction motor drives. The method utilizes Y-configured resistors for CMV detection and a push-pull amplifier with MOSFETs to generate reproduced CMV (RCMV). The RCMV is applied to the motor frame via an isolation transformer, effectively reducing the CMV-induced common-mode current (CMC). The proposed method achieves a significant reduction in the CMC, from 1.5 A to 4 mA peak-to-peak in a simulation and from 2.7 A to 57 mA peak in experiments with a 1.1 kW, 415 V/60 Hz motor. This cost-effective approach enhances motor drive reliability and mitigates electromagnetic interference (EMI), making it suitable for high-voltage applications.

키워드

common-mode currentactive filterscommon-mode voltageelectromagnetic interference (EMI)motor drivesBEARING CURRENTSDIFFERENTIAL-MODEPWM INVERTERSFILTERCANCELLATIONMODULATIONREDUCTIONTERMINALSCIRCUITDV/DT
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An Active Common-Mode Voltage Compensation Method for Three-Phase Induction Motor Drives
저자
Waheed, ZeeshanChoi, Woojin
DOI
10.3390/electronics15071435
발행일
2026-03
유형
Article
저널명
ELECTRONICS
15
7