TY - GEN
T1 - Fuzzy-model-based controller design for nonlinear electromagnetic suspension systems
AU - Su, Xiaojie
AU - Shi, Peng
AU - Wu, Ligang
PY - 2013
Y1 - 2013
N2 - In this paper, the problem of fuzzy-model-based control is investigated for electromagnetic suspension (EMS) systems. Firstly, the nonlinear EMS system is represented by a 4 rules' T-S fuzzy model. Then, a fuzzy state feedback controller is obtained to ensure the required mixed ℓ2- ℓ∞ performance of original EMS system to be achieved. The nonparallel-distributed compensation (PDC) scheme is employed to design this controller. Finally, sufficient conditions for the existence of such controllers are derived in terms of linear matrix inequalities constrict.
AB - In this paper, the problem of fuzzy-model-based control is investigated for electromagnetic suspension (EMS) systems. Firstly, the nonlinear EMS system is represented by a 4 rules' T-S fuzzy model. Then, a fuzzy state feedback controller is obtained to ensure the required mixed ℓ2- ℓ∞ performance of original EMS system to be achieved. The nonparallel-distributed compensation (PDC) scheme is employed to design this controller. Finally, sufficient conditions for the existence of such controllers are derived in terms of linear matrix inequalities constrict.
UR - https://www.scopus.com/pages/publications/84903642438
U2 - 10.1109/iFuzzy.2013.6825484
DO - 10.1109/iFuzzy.2013.6825484
M3 - 会议稿件
AN - SCOPUS:84903642438
SN - 9781479903863
T3 - iFUZZY 2013 - 2013 International Conference on Fuzzy Theory and Its Applications
SP - 465
EP - 469
BT - iFUZZY 2013 - 2013 International Conference on Fuzzy Theory and Its Applications
PB - IEEE Computer Society
T2 - iFUZZY 2013 - 2013 International Conference on Fuzzy Theory and Its Applications
Y2 - 6 December 2013 through 8 December 2013
ER -