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김진국

Kim, Jingook
Integrated Circuit and Electromagnetic Compatibility Lab.
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Frequency-Dependent Bearing Voltage Model for Squirrel-Cage Induction Motors

Author(s)
Yea, ManjeKim, JingookHan, Ki Jin
Issued Date
2022-05
DOI
10.1109/tie.2021.3082065
URI
https://scholarworks.unist.ac.kr/handle/201301/56602
Fulltext
https://ieeexplore.ieee.org/document/9440713
Citation
IEEE TRANSACTIONS ON INDUSTRIAL ELECTRONICS, v.69, no.5, pp.5071 - 5080
Abstract
This work describes a frequency-dependent bearing voltage model for squirrel-cage induction motors. Previous researches related to bearing voltages commonly considered the bearing voltage ratio (BVR) as a constant. However, it is important to analyze the frequency-dependent behavior of BVR when dealing with systems excited by high switching frequency PWM voltages. First, we measured the BVR characteristic for a 1.5-kW test motor. The measurement data shows that, in the mid-frequency range (100 kHz to 6 MHz), the BVR values are smaller than the conventional low-frequency constant value, and at higher frequencies, the BVR value increases above the low-frequency value. Considering this BVR characteristic, an equivalent circuit has been built and analyzed from the perspective of BVR. The proposed equivalent circuit has been verified by comparing simulation data with measurement data. Based on the analysis results of the equivalent circuit, a parametric study was done to examine the effects of motor system parameters on bearing voltage. For the study, variations of the bearing voltage on the changes of the input voltage waveforms and the winding-to-stator capacitance are analyzed by using measurement and simulation data.
Publisher
IEEE
ISSN
0278-0046
Keyword (Author)
induction motorCapacitancecommon-mode (CM) voltageequivalent circuitEquivalent circuitsFrequency measurementInduction motorsIntegrated circuit modelingStator windingsVoltage measurementAC motorbearing voltagebearing voltage ratio (BVR)
Keyword
SHAFT VOLTAGEREDUCTIONCURRENTSGENERATORSDRIVEN

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