Structural Analysis of Induction Machine and Switched Reluctance Machine

被引:6
作者
Maharjan, Lizon [1 ]
Wang, Shiliang [1 ]
Fahimi, Babak [1 ]
机构
[1] Univ Texas Dallas, Renewable Energy & Vehicular Technol Lab, 800 West Campbell Rd, Richardson, TX 75083 USA
关键词
induction machine; switched reluctance machine; in-rush current forces; interference fit; thermal stress; centrifugal forces; HIGH-SPEED; ROTOR; MOTOR;
D O I
10.1080/15325008.2019.1575934
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
Here we present a comprehensive analysis of structural performance of Induction Machine (IM) and Switched Reluctance Machine (SRM) rotors under different operational conditions. Electric machines are susceptible to forces of diverse origins. In addition to traditionally considered magnetic and centrifugal forces, this article discusses independent and inclusive effects of thermal expansion and shaft attachment techniques on structural integrity of the machines. A comparative analysis of structural performance of IMs and SRMs has also been performed, under a range of scenarios, to facilitate application-specific machine selection from a structural perspective.
引用
收藏
页码:164 / 180
页数:17
相关论文
共 50 条
[21]   An extended equivalent model for a switched reluctance machine [J].
Stevens, S. ;
Deprez, W. ;
Bastlaensen, C. ;
Belmans, R. .
IECON 2007: 33RD ANNUAL CONFERENCE OF THE IEEE INDUSTRIAL ELECTRONICS SOCIETY, VOLS 1-3, CONFERENCE PROCEEDINGS, 2007, :1310-1315
[22]   Coupled Switched Reluctance Machine Modeling and Simulations [J].
Yang, Yinye ;
Emadi, Ali .
2014 IEEE TRANSPORTATION ELECTRIFICATION CONFERENCE AND EXPO (ITEC) ASIA-PACIFIC 2014, 2014,
[23]   Impact of Damping material on Vibration Isolation in Switched Reluctance Machine [J].
Vadamodala, Lavanya ;
Chowdhury, Anik ;
Bin Tarek, Md Tawhid ;
Das, Shuvajit ;
Bandarkar, Abdul W. ;
Gundogmus, Omer ;
Sozer, Yilmaz ;
Venegas, Fernando ;
Colavincenzo, David .
2020 IEEE ENERGY CONVERSION CONGRESS AND EXPOSITION (ECCE), 2020, :5553-5559
[24]   High-Performance Torque Controller for Switched Reluctance Machine [J].
Thirumalasetty, Mouli ;
Narayanan, G. .
IEEE TRANSACTIONS ON INDUSTRY APPLICATIONS, 2024, 60 (05) :6923-6937
[25]   A Simplified Flux Linkage Characteristics Model of Switched Reluctance Machine [J].
Ahmad, S. S. ;
Narayanan, G. .
2016 IEEE INTERNATIONAL CONFERENCE ON POWER ELECTRONICS, DRIVES AND ENERGY SYSTEMS (PEDES), 2016,
[26]   A simple magnetic equivalent circuit model for switched reluctance machine [J].
Vahedi, Payam ;
Ganji, Babak .
ELECTRICAL ENGINEERING, 2021, 103 (02) :1307-1320
[27]   A Regenerative Braking System for Switched Reluctance Machine Applied to Electric Vehicles [J].
Hsieh, Min-Fu ;
Li, Po-Ying ;
Ting, Hao-Yu ;
Hsu, Chung-Chan ;
Chang, Chin-Yang ;
Lin, Wei-Che ;
Chang-Chien, Le-Ren .
2016 19TH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS 2016), 2016,
[28]   Design Optimization of 8/14 Switched Reluctance Machine for Electric Vehicle [J].
Cosovic, M. ;
Smaka, S. ;
Salihbegovic, I. ;
Masic, S. .
2012 XXTH INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES (ICEM), 2012, :2654-2659
[29]   Prediction of thermal behaviour of Switched Reluctance Machine using Regression Technique [J].
Jebaseeli, E. Annie Elisabeth ;
Parainasivain, S. .
2015 IEEE INTERNATIONAL CONFERENCE ON ELECTRICAL, COMPUTER AND COMMUNICATION TECHNOLOGIES, 2015,
[30]   Sensorless control of variable speed drives using Switched Reluctance Machine [J].
Sovicka, Pavel ;
Vavrus, Vladimir ;
Rafajdus, Pavol ;
Gao, Qiang .
2017 IEEE INTERNATIONAL SYMPOSIUM ON SENSORLESS CONTROL FOR ELECTRICAL DRIVES (SLED), 2017, :61-66