TY - GEN
T1 - The CFI-PID controller design of PMLSM vector control system
AU - Xu, Zhishu
AU - Cai, Tao
AU - Wang, Guanghui
AU - Xu, Xing
PY - 2012
Y1 - 2012
N2 - Permanent magnet linear synchronous motor (PMLSM) is a multivariable complex nonlinear plant with strong coupling and time-varying parameters. It is hard to reconcile the contradiction between the performance of anti-interference and response speed by traditional PID method. In order to solve the problem, a compound fuzzy immune PID (CFI-PID) method is presented in this paper and applied to the velocity loop of PMLSM vector control system. The proposed controller is compared with traditional PID, fuzzy PID as well as general fuzzy immune PID (FI-PID) when the system starts with rated load, load suddenly changes and the parameters of the PMLSM change, the simulation results show that the CFI-PID controller can achieve smaller overshoot, faster dynamic response, stronger anti-interference performance and robustness.
AB - Permanent magnet linear synchronous motor (PMLSM) is a multivariable complex nonlinear plant with strong coupling and time-varying parameters. It is hard to reconcile the contradiction between the performance of anti-interference and response speed by traditional PID method. In order to solve the problem, a compound fuzzy immune PID (CFI-PID) method is presented in this paper and applied to the velocity loop of PMLSM vector control system. The proposed controller is compared with traditional PID, fuzzy PID as well as general fuzzy immune PID (FI-PID) when the system starts with rated load, load suddenly changes and the parameters of the PMLSM change, the simulation results show that the CFI-PID controller can achieve smaller overshoot, faster dynamic response, stronger anti-interference performance and robustness.
KW - CFI-PID
KW - PMLSM
KW - Vector Control
UR - http://www.scopus.com/inward/record.url?scp=84873530875&partnerID=8YFLogxK
M3 - Conference contribution
AN - SCOPUS:84873530875
SN - 9789881563811
T3 - Chinese Control Conference, CCC
SP - 4366
EP - 4371
BT - Proceedings of the 31st Chinese Control Conference, CCC 2012
T2 - 31st Chinese Control Conference, CCC 2012
Y2 - 25 July 2012 through 27 July 2012
ER -