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      KCI등재 SCIE SCOPUS

      Research on Torque Ripple Suppression of Halbach Array Machine Based on High-order Harmonic Cosine Function Magnet Pole Arc Trimming

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      https://www.riss.kr/link?id=A110250461

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      다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

      A new method that combines cosine pole arc trimming and high-order harmonics is proposed to address torque ripple issues in Halbach-array permanent magnet synchronous machines during high-performance operations. Tunable harmonic-modification functions are introduced at the edges of magnetic-pole slots based on a synergistic optimization strategy combining “multi-objective global optimization and local geometric modification” to effectively suppress torque ripple without significantly reducing the average torque. By focusing on a 9-slot, 6-pole Halbach machine, CHC-3, CHC-5, and CHC-7 schemes are designed and analyzed, and a cosine polearc contour modification equation is derived to parametrically describe the magnet’s surface profile. Among the selected schemes, CHC-3 demonstrates highly effective torque ripple suppression by approximately 20–25%, decreasing the average torque by only about 1%.
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      A new method that combines cosine pole arc trimming and high-order harmonics is proposed to address torque ripple issues in Halbach-array permanent magnet synchronous machines during high-performance operations. Tunable harmonic-modification functions...

      A new method that combines cosine pole arc trimming and high-order harmonics is proposed to address torque ripple issues in Halbach-array permanent magnet synchronous machines during high-performance operations. Tunable harmonic-modification functions are introduced at the edges of magnetic-pole slots based on a synergistic optimization strategy combining “multi-objective global optimization and local geometric modification” to effectively suppress torque ripple without significantly reducing the average torque. By focusing on a 9-slot, 6-pole Halbach machine, CHC-3, CHC-5, and CHC-7 schemes are designed and analyzed, and a cosine polearc contour modification equation is derived to parametrically describe the magnet’s surface profile. Among the selected schemes, CHC-3 demonstrates highly effective torque ripple suppression by approximately 20–25%, decreasing the average torque by only about 1%.

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