Model Antiseptic Control Scheme to Torque Ripple Mitigation for DC-DC Converter-Based BLDC Motor Drives
Dileep Kumar,
Surya Deo Choudhary,
Md Tabrez (),
Afida Ayob () and
Molla Shahadat Hossain Lipu
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Dileep Kumar: Department of Electrical and Electronics Engineering, Motihari College of Engineering, Bihar 845401, India
Surya Deo Choudhary: Department of Electrical and Electronics Engineering, Motihari College of Engineering, Bihar 845401, India
Md Tabrez: Department of Electrical and Electronics Engineering, Motihari College of Engineering, Bihar 845401, India
Afida Ayob: Department of Electrical, Electronic and Systems Engineering, Universiti Kebangsaan Malaysia, Bangi 43600, Malaysia
Molla Shahadat Hossain Lipu: Department of Electrical and Electronic Engineering, Green University of Bangladesh, Dhaka 1207, Bangladesh
Energies, 2022, vol. 15, issue 21, 1-24
Abstract:
Although brushless direct current motor (BLDCM) drives are becoming more popular in industrial and commercial applications, there are still significant difficulties and unresolved research issues that must be addressed. In BLDCM drives, commutation current ripple (CCR) and diode freewheeling during non-commutation zone (NCZ) are the major challenges. To overcome these limitations, this paper proposes a novel PWM-Model Antiseptic Control (PWM-MAC) technique to alleviate the freewheeling of the diode. The proposed PWM technique is used to alleviate the diode freewheeling in the NCZ, whereas the DCLV circuit is utilized to obtain variable DC-link voltage to address the CCR in the CZ. The MATLAB/Simulink results are included along with experimental results obtained from a laboratory prototype of 325 W. The proposed module reduces the current ripple by 31.7% and corresponding torque ripples are suppressed by approximately 32.5%. This evidences the performance of the proposed control technique.
Keywords: PWM-MAC control; commutation current ripple; BLDCM drive; non-commutation zone; diode freewheeling (search for similar items in EconPapers)
JEL-codes: Q Q0 Q4 Q40 Q41 Q42 Q43 Q47 Q48 Q49 (search for similar items in EconPapers)
Date: 2022
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