High-Fidelity Magnetic Equivalent Circuit Model for an Axisymmetric Electromagnetic Actuator

被引:32
|
作者
Batdorff, Mark A. [1 ]
Lumkes, John H. [1 ]
机构
[1] Purdue Univ, Agr & Biol Engn Dept, W Lafayette, IN 47907 USA
基金
美国国家科学基金会;
关键词
Electromagnetic analysis; electromagnetic fields; electromagnetic forces; magnetic circuits; DYNAMIC-MODEL; MOTION; RELUCTANCE;
D O I
10.1109/TMAG.2009.2017531
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
A computationally inexpensive magnetic equivalent circuit (MEC) improves axisymmetric electromagnet design and modeling tools by accurately capturing fringing and leakage effects. Lumped parameter MEC models are typically less accurate for modeling electromagnetic devices than distributed parameter finite-element models (FEMs). However, MEC models require significantly less computational time to solve than FEMs and therefore lend themselves to applications where solution time is critical, such as in optimization routines, dynamic simulation, or preliminary design. This paper describes how fringing permeances in axisymmetric electromagnetic devices can be derived and then included in a MEC model. Including fringing field effects significantly decreases error in the MEC model, creating a more accurate, or high fidelity, magnetic equivalent circuit (HFMEC). Eighty-nine electromagnets with unique geometries, coil currents, and materials were modeled with MEC, HFMEC, and FEM methods. The axisymmetric HFMEC developed in this work had 67% less average force error and 88% less average flux error compared to traditional MEC results while still being computationally inexpensive to solve.
引用
收藏
页码:3064 / 3072
页数:9
相关论文
共 50 条
  • [41] Controllable high-fidelity quantum state transfer and entanglement generation in circuit QED
    Peng Xu
    Xu-Chen Yang
    Feng Mei
    Zheng-Yuan Xue
    Scientific Reports, 6
  • [42] Single magnetic circuit optimization design of an electromagnetic force generator based on an equivalent magnetic circuit method
    Li W.
    Cui J.
    Zou L.
    Wang Z.
    Zhendong yu Chongji/Journal of Vibration and Shock, 2023, 42 (12): : 309 - 316
  • [43] Geometric Control for Unified Entangling Quantum Gate with High-Fidelity in Electric Circuit
    Xu, Lin
    Huang, Gang
    Ji, Y. H.
    Wang, Z. S.
    INTERNATIONAL JOURNAL OF THEORETICAL PHYSICS, 2010, 49 (09) : 2002 - 2015
  • [44] High-fidelity gates and mid-circuit erasure conversion in an atomic qubit
    Ma, Shuo
    Liu, Genyue
    Peng, Pai
    Zhang, Bichen
    Jandura, Sven
    Claes, Jahan
    Burgers, Alex P.
    Pupillo, Guido
    Puri, Shruti
    Thompson, Jeff D.
    NATURE, 2023, 622 (7982) : 279 - +
  • [45] Protocol for high-fidelity readout in the photon-blockade regime of circuit QED
    Ginossar, E.
    Bishop, Lev S.
    Schuster, D. I.
    Girvin, S. M.
    PHYSICAL REVIEW A, 2010, 82 (02):
  • [46] Geometry-Aware Domain Decomposition Methods in High-Fidelity Electromagnetic Design
    Peng, Zhen
    2017 IEEE MTT-S INTERNATIONAL CONFERENCE ON NUMERICAL ELECTROMAGNETIC AND MULTIPHYSICS MODELING AND OPTIMIZATION FOR RF, MICROWAVE, AND TERAHERTZ APPLICATIONS (NEMO), 2017, : 281 - 283
  • [47] Design and optimization of large accelerator systems through high-fidelity electromagnetic simulations
    Ng, Cho
    Akcelik, Volkan
    Candel, Arno
    Chen, Sheng
    Ge, Lixin
    Kabel, Andreas
    Lee, Lie-Quan
    Li, Zenghai
    Prudencio, Ernesto
    Schussman, Greg
    Uplenchwar, Ravi
    Xiao, Liling
    Ko, Kwok
    Austin, T.
    Cary, J. R.
    Ovtchinnikov, S.
    Smith, D. N.
    Werner, G. R.
    Bellantoni, L.
    SCIDAC 2008: SCIENTIFIC DISCOVERY THROUGH ADVANCED COMPUTING, 2008, 125
  • [48] A Space-Time Domain Decomposition Method for High-fidelity Electromagnetic Simulation
    Wang, Shu
    Peng, Zhen
    2018 INTERNATIONAL APPLIED COMPUTATIONAL ELECTROMAGNETICS SOCIETY SYMPOSIUM (ACES), 2018,
  • [49] Equivalent Circuit Model Analysis of Electromagnetic Metasurface Loaded With Plasma
    Xie, Chuanchuan
    Li, Xiaoping
    Dong, Guoxiang
    Yang, Keyuan
    Chen, Xiaoming
    IEEE TRANSACTIONS ON PLASMA SCIENCE, 2022, 50 (08) : 2467 - 2474
  • [50] Enhancing high-fidelity nonlinear solver with reduced order model
    Kadeethum, Teeratorn
    O'Malley, Daniel
    Ballarin, Francesco
    Ang, Ida
    Fuhg, Jan N.
    Bouklas, Nikolaos
    Silva, Vinicius L. S.
    Salinas, Pablo
    Heaney, Claire E.
    Pain, Christopher C.
    Lee, Sanghyun
    Viswanathan, Hari S.
    Yoon, Hongkyu
    SCIENTIFIC REPORTS, 2022, 12 (01)