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논문 기본 정보

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학위논문
저자정보

신호민 (동아대학교, 동아대학교 대학원)

지도교수
장정환
발행연도
2016
저작권
동아대학교 논문은 저작권에 의해 보호받습니다.

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이 논문의 연구 히스토리 (3)

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본 논문에서는 2차원 공간고조파법(2D Space Harmonic Analysis, SHA)을 이용하여 인셋(Inset) PM 타입의 자속 집중형 회전자를 가지는 동축 마그네틱 기어를 해석하였다. 양측 회전자 모두 표면부착형 영구자석을 가지는 동축 마그네틱 기어와는 달리 자속 집중형 동축 마그네틱 기어는 내측 및 외측 회전자에 표면부착형 영구자석과 인셋 PM이 각각 사용되었다. 따라서 내, 외측 회전자에 대한 해석모델은 서로 다르게 표현되며 이에 대한 해석방법이 개별적으로 제시되었다. 중첩의 원리에 의해 내측 회전자 모델과 외측 회전자 모델에서 얻은 공극 자계를 더하여 전체 모델의 공극 자계 분포를 정의하였으며 이를 이용하여 내, 외측 회전자에 발생하는 토크를 계산하였다. 자계 분포 및 토크에 대한 공간고조파법 결과는 유한요소법 결과와 비교하여 유효성을 검증하였다.

목차

1. 서론 ················································································· 1
1.1 동축 마그네틱 기어 연구 ········································ 1
1.2 공간고조파법 모델의 필요성 ································ 2
2. 동축 마그네틱 기어 ···················································· 4
2.1 동축 마그네틱 기어의 구조 및 원리 ··················· 4
2.2 자계 변조 ································································ 6
3. 2차원 공간고조파법 ··················································· 9
3.1 해석방법 및 Flow chart ······································· 9
3.2 내측 표면부착형 영구자석 회전자 모델 ············ 11
3.2.1 해석모델 ··························································· 11
3.2.2 자화 ··································································· 12
3.2.3 지배방정식 ······················································· 14
3.2.4 일반해 ······························································· 15
3.2.5 경계조건 ··························································· 23
3.3 외측 자속집중형 회전자 모델 ····························· 32
3.3.1 해석모델 ··························································· 32
3.3.2 자화 ··································································· 33
3.3.3 지배방정식 ······················································· 35
3.3.4 일반해 ······························································· 36
3.3.5 경계조건 ··························································· 38
4. 자계 및 토크 비교 ····················································· 42
4.1 해석 모델 사양 ······················································ 42
4.2 해석 결과 ······························································· 43
5. 결론 ············································································· 57
참고문헌 ········································································ 58
Abstract ·········································································· 60

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