Development and Optimization Design of Outer Rotor BLDC Motor with Taguchi Method based Response Surface Methodology for FEM Analysis DOI Open Access
Chun-Yu Hsiao,

Soe Min Htet

Published: March 14, 2024

Brushless Direct Current Motors are significantly improved for using many electrical applications. The design investigation is increased year by and most of the motor researchers find out superior efficiency BLDC motor. traditional consumed more power than motors that compact, small, easy to control, save energy light weight. Due this fact, should be analyzed improve characteristics performance. research focuses on performance Taguchi Method Response Surface Methodology (RSM) Finite Element (FEM). Firstly, applied identify optimization point parameters consider reference model actual electric fan with a rated 26Watts design. Based create RSM used two-step in FEM analysis. performances proposed approach provide effeteness investigator. In aims better structural output power, torque, torque ripple. final achieved an 10% higher prototype modes, result 10W We can reduce loss Furthermore, maximum also increase 0.032Nm simulation results were produced studied analysis JMAG software. From evaluation results, configurations compared three methods showed best

Language: Английский

Development and Optimization Design of Outer Rotor BLDC Motor with Taguchi Method based Response Surface Methodology for FEM Analysis DOI Open Access
Chun-Yu Hsiao,

Soe Min Htet

Published: March 14, 2024

Brushless Direct Current Motors are significantly improved for using many electrical applications. The design investigation is increased year by and most of the motor researchers find out superior efficiency BLDC motor. traditional consumed more power than motors that compact, small, easy to control, save energy light weight. Due this fact, should be analyzed improve characteristics performance. research focuses on performance Taguchi Method Response Surface Methodology (RSM) Finite Element (FEM). Firstly, applied identify optimization point parameters consider reference model actual electric fan with a rated 26Watts design. Based create RSM used two-step in FEM analysis. performances proposed approach provide effeteness investigator. In aims better structural output power, torque, torque ripple. final achieved an 10% higher prototype modes, result 10W We can reduce loss Furthermore, maximum also increase 0.032Nm simulation results were produced studied analysis JMAG software. From evaluation results, configurations compared three methods showed best

Language: Английский

Citations

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