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      Switched Reluctance Motor의 자기적 구조에 대한 비교 해석 = Comparison and Analysis on magnetic structures of Switched Reluctance Motors

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      https://www.riss.kr/link?id=A101811770

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      다국어 초록 (Multilingual Abstract)

      SRM is designed to meet operating standards such as low cost, simple magnetic structure, a desired operating speed range, high efficiency, high performance, and good matching for DC power. The magnetic flux of SRM is independent of its direction to de...

      SRM is designed to meet operating standards such as low cost, simple magnetic structure, a desired operating speed range, high efficiency, high performance, and good matching for DC power. The magnetic flux of SRM is independent of its direction to develop a torque and it allows the flexible characteristics of the magnetic structure for SRM. In this paper, SRM can widely classify two types, Radial-Flux SRM and Axial-Flux SRM, according to the flux direction. Radial-Flux SRM includes Conventional, Segmented stator and rotor, and Double stator SRM, etc. and Axial-Flux SRM includes C-core stator and the Axial-airgap SRM. This paper is subjected the basic characteristics to select the best of the magnetic structure of SRM in the appropriate application by the classification of SRM.

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      국문 초록 (Abstract)

      SRM은 저비용, 간단한 자기구조, 넓은 운전속도, 높은 효율, 직류전원과의 우수한 결합성 등의 장점을 가진 전동기구이다. SRM의 토오크는 자속의 방향과는 무관하여 자기구조의 배치가 유연...

      SRM은 저비용, 간단한 자기구조, 넓은 운전속도, 높은 효율, 직류전원과의 우수한 결합성 등의 장점을 가진 전동기구이다. SRM의 토오크는 자속의 방향과는 무관하여 자기구조의 배치가 유연한 특성을 가지고 있어 다양한 자기구조를 가지고 있다. 본 논문에서는 자속방향에 따라 Radial-Flux SRM와 Axial-Flux SRM로 크게 나누었고 기계적인 구조의 차이에 따라 Radial-Flux SRM에는 Conventional, Segmented stator and rotor, Double stator SRM 로, 그리고 Axial-Flux SRM에는 C-core stator와 Axial-airgap SRM로 분류하였고 각각에 대해 비교 해석하여 적절한 용도에 최적의 자기구조를 선택할 수 있도록 각각의 기본적인 특성을 제시하였다.

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      참고문헌 (Reference)

      1 P.J.Lawrenson, "Variable-speed switched reluctance motors" 127, Pt-B (127, Pt-B): 253-265, 1980

      2 Seok-Gyu Oh, "Two-Phase SRM with Flux-Reversal-Free Stator : Concept, Analysis, Design, and Experimental Verification" 43 (43): 1247-1257, 2007

      3 Iqbal Husain, "Torque Ripple Minimization in Switched Reluctance Motor Drives by PWM Current Control" 11 (11): 91-98, 1996

      4 Krishnan R., "Theory and operation of a four-quadrant switched reluctance motor drive with a single controllable switch-the lowest cost four-quadrant brushless motor drive" 41 (41): 1047-1055, 2005

      5 Derrick E. Cameron, "The Origin and Reduction of Acoustic Noise in Doubly Salient Variable-Reluctance Motors" 28 (28): 1250-1255, 1992

      6 R. Krishnan, "Switched Reluctance Motor Drives" CRC Press 2001

      7 Slobodan Vukosavic, "SRM Inverter Topologies: A Comparative Evaluation" 27 (27): 1034-1047, 1991

      8 Wei Wang, "Rotor Shape Investigation and Optimization of Double Stator Switched Reluctance Machine" 51 (51): 2015

      9 Chenjie Lin, "Prediction of Radial Vibration in Switched Reluctance Motors" 28 (28): 1072-1081, 2013

      10 Chenjie Lin, "Prediction of Acoustic Noise in Switched Reluctance Motor Drives" 29 (29): 250-258, 2014

      1 P.J.Lawrenson, "Variable-speed switched reluctance motors" 127, Pt-B (127, Pt-B): 253-265, 1980

      2 Seok-Gyu Oh, "Two-Phase SRM with Flux-Reversal-Free Stator : Concept, Analysis, Design, and Experimental Verification" 43 (43): 1247-1257, 2007

      3 Iqbal Husain, "Torque Ripple Minimization in Switched Reluctance Motor Drives by PWM Current Control" 11 (11): 91-98, 1996

      4 Krishnan R., "Theory and operation of a four-quadrant switched reluctance motor drive with a single controllable switch-the lowest cost four-quadrant brushless motor drive" 41 (41): 1047-1055, 2005

      5 Derrick E. Cameron, "The Origin and Reduction of Acoustic Noise in Doubly Salient Variable-Reluctance Motors" 28 (28): 1250-1255, 1992

      6 R. Krishnan, "Switched Reluctance Motor Drives" CRC Press 2001

      7 Slobodan Vukosavic, "SRM Inverter Topologies: A Comparative Evaluation" 27 (27): 1034-1047, 1991

      8 Wei Wang, "Rotor Shape Investigation and Optimization of Double Stator Switched Reluctance Machine" 51 (51): 2015

      9 Chenjie Lin, "Prediction of Radial Vibration in Switched Reluctance Motors" 28 (28): 1072-1081, 2013

      10 Chenjie Lin, "Prediction of Acoustic Noise in Switched Reluctance Motor Drives" 29 (29): 250-258, 2014

      11 C.bPollock, "Power convertor circuits for switched reluctance motors with the minimum number of switches" 137, Pt-B (137, Pt-B): 373-384, 1990

      12 Hassan Moghbelli, "Performance of 10-Hp Switched Reluctance Motor and Comparison with Induction Motors" 27 (27): 531-538, 1991

      13 R. Madhavan, "Performance Improvement in the Axial Flux- Segmented Rotor-Switched Reluctance Motor" 29 (29): 641-651, 2014

      14 James D. Widmer, "Optimization of an 80-kW Segmental Rotor Switched Reluctance Machine for Automotive Traction" 51 (51): 2990-2999, 2015

      15 Cheewoo Lee, "Novel Two-Phase Switched Reluctance Machine Using Common Pole E-Core Structure : Concept, Analysis, and Experimental Verification" 45 (45): 703-711, 2009

      16 Qiang Yu, "Loss and Efficiency Analysis of Switched Reluctance Machines Using a New Calculation Method" 62 (62): 3072-3080, 2015

      17 Chun Gan, "Investigation of Skewing Effects on the Vibration Reduction of Three-Phase Switched Reluctance Motors" 51 (51): 2015

      18 Peter N.Materu, "Estimation of Switched Reluctance Motor Losses" 28 (28): 668-679, 1992

      19 A.E. Fitzgerald, "Electric Machinery" McGraw-Hill Education 2013

      20 Anas Labak, "Designing and Prototyping a Novel Five-Phase Pancake-Shaped Axial-Flux SRM for Electric Vehicle Application Through Dynamic FEA Incorporating Flux-Tube Modeling" 49 (49): 1276-1288, 2013

      21 Zhenyao Xu, "Design of a Novel 6/5 Segmental Rotor Type Switched Reluctance Motor" 1-7, 2014

      22 Hongtao Zhang, "Design and Performance Analysis of Segmental Rotor Type 12/8 Switched Reluctance Motor" 1-6, 2014

      23 M. Cosovic, "Design Optimization of 8/14 Switched Reluctance Machinefor Electric Vehicle" 2654-2659, 2012

      24 Vandana R, "Design Methodology for High-Performance Segmented Rotor Switched Reluctance Motors" 30 (30): 11-21, 2015

      25 B. Bilgin, "Comprehensive Evaluation of the Dynamic Performance of a 6/10 SRM for Traction Application in PHEVs" 60 (60): 2564-2575, 2013

      26 Jin-Woo Ahn, "Characteristics Analysis of Short Flux-path 4/3 SRM" 2 (2): 40-44, 2013

      27 Hirimu Arihara, "Basic Properties of an Axial-Type Switched Reluctance Motor" 49 (49): 59-65, 2013

      28 R. Madhavan, "Axial Flux Segmented SRM with a Higher Number of Rotor Segments for Electric Vehicles" 28 (28): 203-213, 2013

      29 Jawad Faiz, "Aspects of Design Optimisation for Switched Reluctance Motors" 8 (8): 704-713, 1993

      30 S. Prabhu, "Analysis of Two Phase Switched Reluctance Motor with Flux Reversal Free Stator" 320-325, 2015

      31 M. Anand, "Analysis and Modeling of Different Types of Converter In Switched Reluctance Motor for Reducing the Torque Ripple" 1-6, 2015

      32 Hamed Eskandari, "An Improved 9/12 Two-Phase E-Core Switched Reluctance Machine" 28 (28): 951-958, 2013

      33 Hyong-Yeol Yang, "Acoustic Noise/Vibration Reduction of a Single-Phase SRM Using Skewed Stator and Rotor" 60 (60): 4292-4300, 2013

      34 Krishnan R., "A novel single-phase switched rerluctance motor drive system" 2 : 1488-1493, 2001

      35 Ahmet M. Hava, "A Modified C-Dump Converter for Variable-Reluctance Machines" 28 (28): 1017-1022, 1992

      36 배준경, "3개의 회전자 극을 갖는 SRM의 비교 연구" 한국조명.전기설비학회 28 (28): 92-97, 2014

      37 오석규, "2상 SRM의 비교에 관한 연구" 한국조명.전기설비학회 25 (25): 59-63, 2011

      38 배강열, "2상 4/3 SRM의 구조적 특성에 관한 연구" 한국조명.전기설비학회 28 (28): 115-121, 2014

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 선정 (계속평가) KCI등재
      2017-12-01 평가 등재후보로 하락 (계속평가) KCI등재후보
      2013-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-11-23 학술지명변경 외국어명 : THE JOURNAL OF The KOREAN Institute Of Maritime information & Communication Science -> Journal of the Korea Institute Of Information and Communication Engineering KCI등재
      2011-11-16 학회명변경 영문명 : International Journal of Information and Communication Engineering(IJICE) -> The Korea Institute of Information and Communication Engineering KCI등재
      2011-11-14 학회명변경 한글명 : 한국해양정보통신학회 -> 한국정보통신학회
      영문명 : 미등록 -> International Journal of Information and Communication Engineering(IJICE)
      KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2004-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2002-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.23 0.23 0.27
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.24 0.22 0.424 0.11
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