Subdomain Model for Predicting the Performance of Linear Resolver Considering End Effect and Slotting Effect

被引:22
|
作者
Paymozd, Ayub [1 ]
Saneie, Hamid [1 ]
Nasiri-Gheidari, Zahra [1 ]
Tootoonchian, Farid [2 ]
机构
[1] Sharif Univ Technol, Dept Elect Engn, Tehran 1458889694, Iran
[2] Iran Univ Sci & Technol IUST, Dept Elect Engn, Tehran 16844, Iran
关键词
Computational modeling; Signal resolution; Windings; Stator cores; Sensors; Analytical models; Linear resolver; subdomain model; position sensor; time stepping finite element method (TSFEM);
D O I
10.1109/JSEN.2020.3010785
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
Linear position sensors are essential parts of linear motion control systems. Among different linear sensors, linear resolvers are an appropriate choice for harsh environments. Design optimization of linear resolvers needs an accurate, but computationally fast model for their performance prediction. Slotting effect of the cores and end effect are two important phenomena that must be accurately involved in the model to ensure its reliable results. Therefore, in this paper a semi-analytical model based on subdomain modeling technique is proposed for linear resolvers. Then, according to the developed model, the induced voltages in the signal windings of the resolver are calculated and consequently, the position error of the resolver is determined. Numerical results are subsequently obtained by time stepping finite element method (TSFEM) to verify the proposed model. Finally, experimental tests on the prototype sensor are conducted to verify the success of the simulations.
引用
收藏
页码:14747 / 14755
页数:9
相关论文
共 50 条
  • [21] Effect of static longitudinal end effect on performance of arc linear induction motor
    Liu, Wenxuan
    Cui, Zongze
    Hao, Wei
    Song, Liwei
    2019 22ND INTERNATIONAL CONFERENCE ON ELECTRICAL MACHINES AND SYSTEMS (ICEMS 2019), 2019, : 5531 - 5536
  • [22] Dynamic Performance Improvement of Linear Induction Motor Using DTFC Method and Considering End-Effect Phenomenon
    Shadabi, Hamed
    Sadat, Amin Rahnama
    Nabavi, Mohammad H.
    Azari, Mehran A.
    Sharifian, Mohammad B. B.
    2014 AUSTRALASIAN UNIVERSITIES POWER ENGINEERING CONFERENCE (AUPEC), 2014,
  • [23] Performance analysis of linear permanent magnet Vernier machine using mixed subdomain and magnetic equivalent circuit techniques including end-effect
    Amini, Sohrab
    Faiz, Jawad
    IET ELECTRIC POWER APPLICATIONS, 2022, 16 (09) : 966 - 984
  • [24] Equivalent linear model of intact loess considering structural effect
    Loess Soil Mechanics and Engineering Key Laboratory of Shanxi Province, Institute of Geotechnical Engineering, Xi'an University of Technology, Xi'an 710048, China
    不详
    Yantu Gongcheng Xuebao, 2007, 9 (1330-1336):
  • [25] Nonlinear Analytical Model of Linear Switched Reluctance Motor With Segmented Secondary Considering Iron Saturation and End Effect
    Li, Zhipeng
    Wang, Daohan
    Huang, Can
    Xu, Shuang
    Wang, Xiuhe
    IEEE ACCESS, 2023, 11 : 132078 - 132087
  • [26] Mathematical model and vector control of six-phase linear induction motor considering dynamic end effect
    Han Y.
    Nie Z.-L.
    Zhu J.-J.
    Xu J.
    Guo D.-H.
    Rui W.-Z.
    Dianji yu Kongzhi Xuebao/Electric Machines and Control, 2019, 23 (03): : 9 - 17
  • [27] Electromagnetic design method of linear induction motor considering lateral end effect
    Cai J.
    Wang S.
    Pang C.
    Xibei Gongye Daxue Xuebao/Journal of Northwestern Polytechnical University, 2021, 39 (05): : 1114 - 1121
  • [28] Winding Function Model for Predicting Performance of 2-DOF Wound Rotor Resolver
    Zare, Fateme
    Nasiri-Gheidari, Zahra
    IEEE TRANSACTIONS ON TRANSPORTATION ELECTRIFICATION, 2022, 8 (02): : 2062 - 2069
  • [29] An improved cutting force model considering the size effect in end milling
    2000, American Society of Mechanical Engineers (11):
  • [30] Model Predictive Current Control of Double-Side Linear Vernier Permanent Magnet Machines Considering End Effect
    Chen X.
    Zhao W.
    Ji J.
    Tao T.
    Xue R.
    Diangong Jishu Xuebao/Transactions of China Electrotechnical Society, 2019, 34 (01): : 49 - 57