DocumentCode :
737839
Title :
Sensorless Control of CSC-Fed IPM Machine for Zero- and Low-Speed Operations Using Pulsating HFI Method
Author :
Al-nabi, E. ; Bin Wu ; Zargari, Navid R. ; Sood, V.
Author_Institution :
Dept. of Electr. & Comput. Eng., Ryerson Univ., Toronto, ON, Canada
Volume :
60
Issue :
5
fYear :
2013
fDate :
5/1/2013 12:00:00 AM
Firstpage :
1711
Lastpage :
1723
Abstract :
In this paper, a sensorless method for low- and zero-speed operations is proposed for a high-power medium-voltage pulsewidth-modulated current-source-converter-fed interior-permanent-magnet motor drive system. The proposed method is based on the injection of a high frequency (HF) pulsating sinusoidal signal in the estimated synchronous reference frame of the drive´s field-oriented control (FOC) scheme. The conventional FOC control scheme, low switching frequency, dc-link inductor, and the inverter output three-phase filter capacitor of the medium-voltage high-power current-source drive present some challenges in the generation and design of the HF-injection signal. To overcome these challenges, the FOC scheme is modified by introducing a modulation index control with suitable dc-link current compensation to enhance the dynamic response of the injected signal and prevent any clamp in the injected signal. In addition, a multisampling-space-vector-modulation method is proposed to prevent the distortion in the HF signal due to a low switching frequency to injected signal ratio. A detailed study and analysis regarding the influence of low switching frequency, output filter capacitor, and magnetic saturation in the injection method is carried out to determine the visible HF range of the injected signal. It is found that, by using the proposed FOC scheme and multisampling modulation scheme and by the proper design of the HF signal, an accurate rotor flux angle can be estimated for sensorless zero-/low-speed operations. Experimental results are provided to verify the proposed control method.
Keywords :
PWM invertors; dynamic response; machine vector control; motor drives; permanent magnet motors; power capacitors; power filters; power inductors; sensorless machine control; CSC-fed IPM machine; FOC control scheme; HF-injection signal design; dc-link current compensation; dc-link inductor; drive field-oriented control scheme; dynamic response; estimated synchronous reference frame; high frequency pulsating sinusoidal signal; high-power medium-voltage pulsewidth-modulated current-source-converter; injected signal ratio; interior-permanent-magnet motor drive system; inverter output three-phase filter capacitor; low switching frequency; low-speed operations; magnetic saturation; medium-voltage high-power current-source drive; modulation index control; multisampling modulation scheme; multisampling-space-vector-modulation method; pulsating HFI method; rotor flux angle; sensorless control method; zero-speed operations; Capacitors; Hafnium; Inverters; Modulation; Rectifiers; Rotors; Stators; Current-source converter (CSC); high frequency (HF) injection (HFI) methods; high-power drives; interior permanent magnet (IPM) synchronous machine; medium-voltage drives; zero-speed sensorless control methods;
fLanguage :
English
Journal_Title :
Industrial Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0278-0046
Type :
jour
DOI :
10.1109/TIE.2012.2191752
Filename :
6172664
Link To Document :
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