Observers;
Transfer functions;
Sensorless control;
Estimation error;
Rotors;
Interference;
Frequency estimation;
Dual three-phase interior permanent magnet synchronous machine (DTP-IPMSM);
frequency adaptive;
linear extended state observer (LESO);
transfer function design;
FAULT-TOLERANT CONTROL;
6-PHASE INDUCTION-MOTOR;
MULTIPHASE MACHINES;
ROTOR POSITION;
PMSM DRIVES;
TORQUE;
DESIGN;
ENHANCEMENT;
IMPROVEMENT;
CAPABILITY;
D O I:
10.1109/TPEL.2023.3307954
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:
The sensorless control of interior permanent magnet synchronous motor based on the conventional linear extended state observer (LESO) does not have sufficient capability to eliminate the steady-state position estimation error. To solve this issue, a frequency adaptive LESO (FA-LESO) is proposed to estimate the back electromotive force accurately. The gains of the proposed observer are designed according to the pre-designed transfer function of a second-order complex-coefficient filter, whose stability is guaranteed by the generalized Routh criterion. The linearized model of the proposed FA-LESO is established and the design guideline of the observer gains is presented. Compared with the conventional LESO, the proposed FA-LESO can eliminate the steady-state position estimation error without any phase compensation. Meanwhile, it exhibits better high-frequency noise immunity without additional filters being required. The feasibility and effectiveness of the proposed FA-LESO are verified by the comparative experiments on a dual three-phase IPMSM platform.