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      Reduction of Cogging Torque in Surface Mounted Permanent Magnet Brushless DC Motor by Adapting Rotor Magnetic Displacement

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      Energies
      MDPI AG

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          Abstract

          Cogging torque is a critical dilemma in Permanent Magnet Brushless DC (PMBLDC) motors. In medium-low power PMBLDC motors, redundant vibrations and forbidding noises arise as a result of the harmonic magnetic forces created by cogging torque. This paper introduces a simple approach for minimizing cogging torque in PMBLDC motors by applying placement irregularities in rotor magnets. An angle shift in the rotor magnets in surface-mounted PMBLDC motors helps to attain magnet displacement. This displacement imparts an asymmetrical magnet structure to the rotor. Maintaining pole arc to pole pitch ratio (L/τ) of between 0.6 and 0.8, shifting angles from 1° to 8° were considered in order to analyze the effect of the angle shift on the rotor magnets. An analytical expression was also derived for finding the shifting angle with the minimum cogging torque in the PMBLDC motor by using the Virtual Work Method (VWM). The optimization of the shifting angle with minimum cogging torque was investigated using 3D Finite Element Analysis (FEA). A comparison of the simulation and analytical results of cogging torque was carried out. It was determined that the reduction of cogging torque in the analytical results showed good agreement with the FEA analysis.

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          Most cited references28

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          The optimization of pole arc coefficient to reduce cogging torque in surface-mounted permanent magnet motors

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            Cogging torque and acoustic noise reduction in permanent magnet motors by teeth pairing

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              Optimal core shape design for cogging torque reduction of brushless DC motor using genetic algorithm

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                Author and article information

                Contributors
                (View ORCID Profile)
                Journal
                ENERGA
                Energies
                Energies
                MDPI AG
                1996-1073
                May 2021
                May 15 2021
                : 14
                : 10
                : 2861
                Article
                10.3390/en14102861
                411edc8e-4d75-4473-91e1-1a6db5b53a9e
                © 2021

                https://creativecommons.org/licenses/by/4.0/

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