TY - JOUR
T1 - Design, optimization and test of RHMB considering dynamic characteristics
AU - Han, Bangcheng
AU - He, Zan
AU - Wen, Tong
AU - Zheng, Shiqiang
N1 - Publisher Copyright:
© 2022 Elsevier Ltd
PY - 2023/1/15
Y1 - 2023/1/15
N2 - The coil inductance, stiffness and losses of the magnetic bearing (MB) have great influence on the dynamic performance for the magnetically suspended control moment gyro (MSCMG) application. Based on the equivalent magnetic circuits considering flux leakage effects, a design, optimization and test method is proposed to enhance the dynamic response ability for the radial hybrid MB (RHMB). The optimization design objectives including bearing force, stiffness, coil current, mass, inductance and loss estimation are discussed under the multiple constraints. Compared with the original design, the dynamic characteristics including frequency responses of current and rotor displacements for the RHMB-rotor system are significantly improved after optimization. A prototype of MSCMG is fabricated to verify the dynamic response characteristic of the RHMB.
AB - The coil inductance, stiffness and losses of the magnetic bearing (MB) have great influence on the dynamic performance for the magnetically suspended control moment gyro (MSCMG) application. Based on the equivalent magnetic circuits considering flux leakage effects, a design, optimization and test method is proposed to enhance the dynamic response ability for the radial hybrid MB (RHMB). The optimization design objectives including bearing force, stiffness, coil current, mass, inductance and loss estimation are discussed under the multiple constraints. Compared with the original design, the dynamic characteristics including frequency responses of current and rotor displacements for the RHMB-rotor system are significantly improved after optimization. A prototype of MSCMG is fabricated to verify the dynamic response characteristic of the RHMB.
KW - Control moment gyro
KW - Equivalent magnetic circuit
KW - Hybrid magnetic bearing
KW - Optimization
UR - https://www.scopus.com/pages/publications/85142336101
U2 - 10.1016/j.ijmecsci.2022.107847
DO - 10.1016/j.ijmecsci.2022.107847
M3 - 文章
AN - SCOPUS:85142336101
SN - 0020-7403
VL - 238
JO - International Journal of Mechanical Sciences
JF - International Journal of Mechanical Sciences
M1 - 107847
ER -