Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit

There exists torque ripple in the commutation process of brushless DC motor (BLDCM), which seriously restricts its application in the high-performance field. This paper proposes an auxiliary step-up circuit to suppress the commutation torque ripple of BLDCM, and the auxiliary step-up circuit consist...

Full description

Bibliographic Details
Main Authors: Xuliang Yao, Jicheng Zhao, Jingfang Wang, Shengqi Huang, Yishu Jiang
Format: Article
Language:English
Published: IEEE 2019-01-01
Series:IEEE Access
Subjects:
Online Access:https://ieeexplore.ieee.org/document/8847380/
id doaj-9701f9212cf34101a6c52a08107e65b2
record_format Article
spelling doaj-9701f9212cf34101a6c52a08107e65b22021-03-29T23:11:18ZengIEEEIEEE Access2169-35362019-01-01713872113873110.1109/ACCESS.2019.29434118847380Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up CircuitXuliang Yao0Jicheng Zhao1https://orcid.org/0000-0002-1002-7835Jingfang Wang2Shengqi Huang3Yishu Jiang4College of Automation, Harbin Engineering University, Harbin, ChinaCollege of Automation, Harbin Engineering University, Harbin, ChinaCollege of Automation, Harbin Engineering University, Harbin, ChinaCollege of Automation, Harbin Engineering University, Harbin, ChinaCollege of Automation, Harbin Engineering University, Harbin, ChinaThere exists torque ripple in the commutation process of brushless DC motor (BLDCM), which seriously restricts its application in the high-performance field. This paper proposes an auxiliary step-up circuit to suppress the commutation torque ripple of BLDCM, and the auxiliary step-up circuit consists of a transformer, a capacitor and a switch circuit. For effective suppression of the commutation torque ripple, the capacitor is charged in the non-commutation period. When the commutation occurs, the charged capacitor is added on the power source through a switch circuit to step up the dc-bus voltage in the commutation period, and the three-phase inverter is regulated to make the motor's input voltage is equal to four times the back electromotive force (back EMF) amplitude. The auxiliary step-up circuit only transfers partial power required in the commutation process of the motor, and the capacity of the power components is reduced accordingly. The inductive energy stored in the transformer is returned to the power source in each switching cycle, which improves the energy utilization rate. In addition, this method can also shorten the commutation time. The validity and effectiveness of the proposed method is verified through experimental results.https://ieeexplore.ieee.org/document/8847380/Brushless DC motorcommutation torque rippledc-bus voltagecommutation time
collection DOAJ
language English
format Article
sources DOAJ
author Xuliang Yao
Jicheng Zhao
Jingfang Wang
Shengqi Huang
Yishu Jiang
spellingShingle Xuliang Yao
Jicheng Zhao
Jingfang Wang
Shengqi Huang
Yishu Jiang
Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
IEEE Access
Brushless DC motor
commutation torque ripple
dc-bus voltage
commutation time
author_facet Xuliang Yao
Jicheng Zhao
Jingfang Wang
Shengqi Huang
Yishu Jiang
author_sort Xuliang Yao
title Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
title_short Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
title_full Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
title_fullStr Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
title_full_unstemmed Commutation Torque Ripple Reduction for Brushless DC Motor Based on an Auxiliary Step-Up Circuit
title_sort commutation torque ripple reduction for brushless dc motor based on an auxiliary step-up circuit
publisher IEEE
series IEEE Access
issn 2169-3536
publishDate 2019-01-01
description There exists torque ripple in the commutation process of brushless DC motor (BLDCM), which seriously restricts its application in the high-performance field. This paper proposes an auxiliary step-up circuit to suppress the commutation torque ripple of BLDCM, and the auxiliary step-up circuit consists of a transformer, a capacitor and a switch circuit. For effective suppression of the commutation torque ripple, the capacitor is charged in the non-commutation period. When the commutation occurs, the charged capacitor is added on the power source through a switch circuit to step up the dc-bus voltage in the commutation period, and the three-phase inverter is regulated to make the motor's input voltage is equal to four times the back electromotive force (back EMF) amplitude. The auxiliary step-up circuit only transfers partial power required in the commutation process of the motor, and the capacity of the power components is reduced accordingly. The inductive energy stored in the transformer is returned to the power source in each switching cycle, which improves the energy utilization rate. In addition, this method can also shorten the commutation time. The validity and effectiveness of the proposed method is verified through experimental results.
topic Brushless DC motor
commutation torque ripple
dc-bus voltage
commutation time
url https://ieeexplore.ieee.org/document/8847380/
work_keys_str_mv AT xuliangyao commutationtorqueripplereductionforbrushlessdcmotorbasedonanauxiliarystepupcircuit
AT jichengzhao commutationtorqueripplereductionforbrushlessdcmotorbasedonanauxiliarystepupcircuit
AT jingfangwang commutationtorqueripplereductionforbrushlessdcmotorbasedonanauxiliarystepupcircuit
AT shengqihuang commutationtorqueripplereductionforbrushlessdcmotorbasedonanauxiliarystepupcircuit
AT yishujiang commutationtorqueripplereductionforbrushlessdcmotorbasedonanauxiliarystepupcircuit
_version_ 1724190009635897344