A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter

In order to improve the efficiency of the traction system, this paper researches the PWM control strategy of high-frequency SiC traction inverter system from multiple dimensions such as inverter switching frequency optimization, modulation strategy selection and motor control algorithm adaptation. A...

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Main Authors: HU Liang, FU Xiangyu, LYU Yongcan, FENG Ling, HU Dong
Format: Article
Language:zho
Published: Editorial Office of Control and Information Technology 2022-06-01
Series:Kongzhi Yu Xinxi Jishu
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Online Access:http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2022.03.006
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author HU Liang
FU Xiangyu
LYU Yongcan
FENG Ling
HU Dong
author_facet HU Liang
FU Xiangyu
LYU Yongcan
FENG Ling
HU Dong
author_sort HU Liang
collection DOAJ
description In order to improve the efficiency of the traction system, this paper researches the PWM control strategy of high-frequency SiC traction inverter system from multiple dimensions such as inverter switching frequency optimization, modulation strategy selection and motor control algorithm adaptation. A multi-mode PWM control method for SiC traction inverter is proposed in this paper. At low and medium speeds which below 30% rated speed, the high-frequency characteristics of SiC are fully utilized and the rated switching frequency of the inverter is optimized based on the principle of system loss optimization. During high speeds above 30% rated speed, the current harmonics are optimized modulated to achieve motor current harmonic suppression, while the motor voltage utilization rate can reach 97%. In addition, a new closed loop control method for multimodal stator flux trajectories of traction motors is proposed in order to adapt to the new PWM control method. The proposed PWM control method is compared with the traditional low-frequency PWM control method. Experimental results show that using the proposed algorithm, the total harmonic distortion (THD) of the motor current can be reduced by a maximum of 9.31%, the overall loss of the traction system can be reduced by a maximum of 10.2%, the temperature rise of the motor can be reduced by a maximum of 31 K, and the maximum noise suppression of the motor can reach 10 dB. Effectiveness of the proposed PWM modulation method is demonstrated.
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institution Kabale University
issn 2096-5427
language zho
publishDate 2022-06-01
publisher Editorial Office of Control and Information Technology
record_format Article
series Kongzhi Yu Xinxi Jishu
spelling doaj-art-6bc6f9747cbe4167946176e6242c13be2025-08-25T06:48:49ZzhoEditorial Office of Control and Information TechnologyKongzhi Yu Xinxi Jishu2096-54272022-06-01394528969920A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction InverterHU LiangFU XiangyuLYU YongcanFENG LingHU DongIn order to improve the efficiency of the traction system, this paper researches the PWM control strategy of high-frequency SiC traction inverter system from multiple dimensions such as inverter switching frequency optimization, modulation strategy selection and motor control algorithm adaptation. A multi-mode PWM control method for SiC traction inverter is proposed in this paper. At low and medium speeds which below 30% rated speed, the high-frequency characteristics of SiC are fully utilized and the rated switching frequency of the inverter is optimized based on the principle of system loss optimization. During high speeds above 30% rated speed, the current harmonics are optimized modulated to achieve motor current harmonic suppression, while the motor voltage utilization rate can reach 97%. In addition, a new closed loop control method for multimodal stator flux trajectories of traction motors is proposed in order to adapt to the new PWM control method. The proposed PWM control method is compared with the traditional low-frequency PWM control method. Experimental results show that using the proposed algorithm, the total harmonic distortion (THD) of the motor current can be reduced by a maximum of 9.31%, the overall loss of the traction system can be reduced by a maximum of 10.2%, the temperature rise of the motor can be reduced by a maximum of 31 K, and the maximum noise suppression of the motor can reach 10 dB. Effectiveness of the proposed PWM modulation method is demonstrated.http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2022.03.006SiCPWM controloptimal modulationmotor lossmotor noisestator flux trajectory control
spellingShingle HU Liang
FU Xiangyu
LYU Yongcan
FENG Ling
HU Dong
A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
Kongzhi Yu Xinxi Jishu
SiC
PWM control
optimal modulation
motor loss
motor noise
stator flux trajectory control
title A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
title_full A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
title_fullStr A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
title_full_unstemmed A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
title_short A Frequency Hybrid Multi-mode PWM Modulation Method for SiC Traction Inverter
title_sort frequency hybrid multi mode pwm modulation method for sic traction inverter
topic SiC
PWM control
optimal modulation
motor loss
motor noise
stator flux trajectory control
url http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2022.03.006
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AT fengling afrequencyhybridmultimodepwmmodulationmethodforsictractioninverter
AT hudong afrequencyhybridmultimodepwmmodulationmethodforsictractioninverter
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