Title :
Adaptive notch filter based harmonic self-compensated sliding-mode observer for position sensorless IPMSM drives
Author :
Guoqiang Zhang ; Gaolin Wang ; Ronggang Ni ; Dianguo Xu
Author_Institution :
Sch. of Electr. Eng. & Autom., Harbin Inst. of Technol., Harbin, China
Abstract :
To suppress the position error harmonic ripples in back electromotive force (EMF) based methods for position sensorless interior permanent magnet synchronous motor (IPSMSM) drives, an adaptive notch filter (ANF) based harmonic self-compensated sliding-mode observer (SMO) is proposed. The inverter nonlinearities and flux spatial harmonics that induce the position error harmonic ripples are analyzed. The back-EMF information containing harmonics can be obtained through SMO, and then the least mean square (LMS) based ANF is adopted to realize back-EMF harmonic detecting and self-compensating, thus eliminating the position error harmonic ripples. Due to the simple structure, the ANF based harmonic self-compensated SMO can be easily implemented on low-cost microchips with little computational burden. Experiments on a 2.2kW IPMSM sensorless vector controlled drive have been carried out to verify the proposed scheme.
Keywords :
compensation; electric potential; least mean squares methods; notch filters; permanent magnet motors; power harmonic filters; sensorless machine control; synchronous motor drives; variable structure systems; ANF based harmonic self-compensated sliding-mode observer; IPSMSM drives; LMS based ANF; adaptive notch filter based harmonic self-compensated SMO; back EMF based methods; back electromotive force based methods; back-EMF harmonic detecting; flux spatial harmonics; inverter nonlinearities; least mean square based ANF; low-cost microchips; position error harmonic ripples; position sensorless interior permanent magnet synchronous motor drives; power 2.2 kW; Adaptation models; Harmonic analysis; Mathematical model; Notch filters; Observers; Power harmonic filters; Rotors; Sensorless; harmonic self-compensated sliding-mode observer; interior permanent magnet synchronous motor (IPMSM); position error harmonic ripple;
Conference_Titel :
Power Electronics and ECCE Asia (ICPE-ECCE Asia), 2015 9th International Conference on
Conference_Location :
Seoul
DOI :
10.1109/ICPE.2015.7167921