A dynamic simulation model of a hybrid magnetic bearing
A dynamic simulation model of a hybrid magnetic bearing
This paper proposes a model of a hybrid magnetic bearing for simulations of transient performance. It combines a nonlinear magnetic equivalent circuit of the bearing with the ordinary differential equations of its mechanical and electric circuits. The model is validated by comparing the time responses of transients from calculations with those measured on a real object; the agreement is shown to be very satisfactory.
hybrid magnetic bearing, nonlinear magnetic equivalent circuit, simulation model
Wajnert, Dawid
d3e007e2-17e5-44f0-8331-2c7464f008ff
Sykulski, Jan K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
Tomczuk, Bronislaw
bd54295c-b06e-4209-891b-40113f973991
20 May 2020
Wajnert, Dawid
d3e007e2-17e5-44f0-8331-2c7464f008ff
Sykulski, Jan K.
d6885caf-aaed-4d12-9ef3-46c4c3bbd7fb
Tomczuk, Bronislaw
bd54295c-b06e-4209-891b-40113f973991
Wajnert, Dawid, Sykulski, Jan K. and Tomczuk, Bronislaw
(2020)
A dynamic simulation model of a hybrid magnetic bearing.
In 2019 19th International Symposium on Electromagnetic Fields in Mechatronics, Electrical and Electronic Engineering (ISEF).
IEEE.
2 pp
.
(doi:10.1109/ISEF45929.2019.9097028).
Record type:
Conference or Workshop Item
(Paper)
Abstract
This paper proposes a model of a hybrid magnetic bearing for simulations of transient performance. It combines a nonlinear magnetic equivalent circuit of the bearing with the ordinary differential equations of its mechanical and electric circuits. The model is validated by comparing the time responses of transients from calculations with those measured on a real object; the agreement is shown to be very satisfactory.
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Published date: 20 May 2020
Venue - Dates:
19th International Symposium on Electromagnetic Fields in Mechatronics, Electrical and Electronic Engineering, ISEF 2019, , Nancy, France, 2019-08-29 - 2019-08-31
Keywords:
hybrid magnetic bearing, nonlinear magnetic equivalent circuit, simulation model
Identifiers
Local EPrints ID: 486011
URI: http://eprints.soton.ac.uk/id/eprint/486011
PURE UUID: 96cc64cf-e5f4-45a0-861b-aac24bfd5e1b
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Date deposited: 05 Jan 2024 17:48
Last modified: 18 Mar 2024 02:32
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Contributors
Author:
Dawid Wajnert
Author:
Jan K. Sykulski
Author:
Bronislaw Tomczuk
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