Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System
This study facilitated the improvement of no-load back electromotive force (back-EMF) wave form, total harmonic distortion (THD) of back-EMF, and torque ripple using a novel skew angle formula, considering the specific order of a no-load THD. In real usage environments, it is taken into consideratio...
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doaj-e42f2789922f40afb7b945d3c21cbb652021-09-09T23:00:43ZengIEEEIEEE Access2169-35362021-01-01912140512141310.1109/ACCESS.2021.31092679526594Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling SystemHyungkwan Jang0https://orcid.org/0000-0003-3199-7141Hyunwoo Kim1https://orcid.org/0000-0003-4121-1851Dong-Woo Nam2Won-Ho Kim3https://orcid.org/0000-0002-7279-5928Ju Lee4https://orcid.org/0000-0003-0251-6492Changsung Jin5https://orcid.org/0000-0002-8158-6212Department of Electrical Engineering, Hanyang University, Seoul, Republic of KoreaDepartment of Electrical Engineering, Hanyang University, Seoul, Republic of KoreaDepartment of Electrical Engineering, Gachon University, Seongnam-si, Republic of KoreaDepartment of Electrical Engineering, Gachon University, Seongnam-si, Republic of KoreaDepartment of Electrical Engineering, Hanyang University, Seoul, Republic of KoreaDepartment of Electrical Engineering, Wonkwang University, Iksan, Republic of KoreaThis study facilitated the improvement of no-load back electromotive force (back-EMF) wave form, total harmonic distortion (THD) of back-EMF, and torque ripple using a novel skew angle formula, considering the specific order of a no-load THD. In real usage environments, it is taken into consideration for the fully enclosed cooling system and limited inverter switching frequency of urban railway car traction motors. Since the most railway car traction motors use high-withstand voltage rectangular wires in slot-open structure, a no-load back EMF waveform includes large space slot harmonics, which should be smaller as possible. For 6-step control, the no-load back EMF waveform is important because switching for motor control is performed once after the rotor position is determined. To improve the no-load back EMF waveform and THD, two-dimensional and three-dimensional finite element analysis (FEA) were performed using a novel skew angle formula considering specific harmonic order reduction, while the fundamental amplitude was minimally reduced. A prototype with the novel skew was fabricated and verified. In addition, it was designed by calculating a low current density for a fully enclosed cooling system. A temperature saturation experiment was also performed, and successfully verified. Therefore, we suggest that the no-load back EMF characteristics and torque ripple are improved by applying the novel skew angle instead of a traditional skew angle.https://ieeexplore.ieee.org/document/9526594/Current densityno-load back-electromagnetic force (EMF) waverailway car traction motorsskew angle6-step control |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Hyungkwan Jang Hyunwoo Kim Dong-Woo Nam Won-Ho Kim Ju Lee Changsung Jin |
spellingShingle |
Hyungkwan Jang Hyunwoo Kim Dong-Woo Nam Won-Ho Kim Ju Lee Changsung Jin Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System IEEE Access Current density no-load back-electromagnetic force (EMF) wave railway car traction motors skew angle 6-step control |
author_facet |
Hyungkwan Jang Hyunwoo Kim Dong-Woo Nam Won-Ho Kim Ju Lee Changsung Jin |
author_sort |
Hyungkwan Jang |
title |
Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System |
title_short |
Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System |
title_full |
Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System |
title_fullStr |
Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System |
title_full_unstemmed |
Investigation and Analysis of Novel Skewing in a 140 kW Traction Motor of Railway Cars That Accommodate Limited Inverter Switching Frequency and Totally Enclosed Cooling System |
title_sort |
investigation and analysis of novel skewing in a 140 kw traction motor of railway cars that accommodate limited inverter switching frequency and totally enclosed cooling system |
publisher |
IEEE |
series |
IEEE Access |
issn |
2169-3536 |
publishDate |
2021-01-01 |
description |
This study facilitated the improvement of no-load back electromotive force (back-EMF) wave form, total harmonic distortion (THD) of back-EMF, and torque ripple using a novel skew angle formula, considering the specific order of a no-load THD. In real usage environments, it is taken into consideration for the fully enclosed cooling system and limited inverter switching frequency of urban railway car traction motors. Since the most railway car traction motors use high-withstand voltage rectangular wires in slot-open structure, a no-load back EMF waveform includes large space slot harmonics, which should be smaller as possible. For 6-step control, the no-load back EMF waveform is important because switching for motor control is performed once after the rotor position is determined. To improve the no-load back EMF waveform and THD, two-dimensional and three-dimensional finite element analysis (FEA) were performed using a novel skew angle formula considering specific harmonic order reduction, while the fundamental amplitude was minimally reduced. A prototype with the novel skew was fabricated and verified. In addition, it was designed by calculating a low current density for a fully enclosed cooling system. A temperature saturation experiment was also performed, and successfully verified. Therefore, we suggest that the no-load back EMF characteristics and torque ripple are improved by applying the novel skew angle instead of a traditional skew angle. |
topic |
Current density no-load back-electromagnetic force (EMF) wave railway car traction motors skew angle 6-step control |
url |
https://ieeexplore.ieee.org/document/9526594/ |
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