DocumentCode
874791
Title
Adaptive Dead-Time Compensation Strategy for Permanent Magnet Synchronous Motor Drive
Author
Urasaki, Naomitsu ; Senjyu, Tomonobu ; Uezato, Katsumi ; Funabashi, Toshihisa
Author_Institution
Dept. of Electr. & Electron. Eng., Ryukyus Univ., Okinawa
Volume
22
Issue
2
fYear
2007
fDate
6/1/2007 12:00:00 AM
Firstpage
271
Lastpage
280
Abstract
This paper presents an adaptive dead-time compensation strategy to obtain fundamental phase voltage for inverter-fed vector-controlled permanent magnet synchronous motor drives. A phase dead-time compensation voltage (DTCV) to compensate the disturbance voltage due to undesirable characteristics of inverter, such as dead time, turn on/off time of switching devices, and on-voltages of switching devices and diode, is transformed into q-axis DTCV in the rotor reference frame. The relationship between q-axis DTCV and a dead-time compensation time (DTCT) is investigated. DTCT is identified online by using q-axis disturbance voltage, which is estimated by a disturbance observer. The amplitude of phase DTCV is adaptively determined according to the identified DTCT. The accuracy of identified DTCT is experimentally confirmed by calculating the mean absolute percentage error (MAPE) between calculated active power and measured one. MAPE for adaptive DTCT is within 5% at any operating point and is less than that for the fixed DTCT.
Keywords
fault diagnosis; invertors; machine vector control; permanent magnet motors; rotors; switching convertors; synchronous motor drives; active power; adaptive dead-time compensation voltage; dead-time compensation time; disturbance observer; disturbance voltage compensation; inverter fed vector control; mean absolute percentage error; permanent magnet synchronous motor drives; rotor reference frame; switching devices; Delay estimation; Diodes; Frequency estimation; Inverters; Permanent magnet motors; Power engineering and energy; Power measurement; Rotors; Synchronous motors; Voltage; Dead-time compensation time (DTCT); dead time compensation voltage (DTCV); disturbance voltage; permanent magnet synchronous motor (PMSM); voltage source inverter;
fLanguage
English
Journal_Title
Energy Conversion, IEEE Transactions on
Publisher
ieee
ISSN
0885-8969
Type
jour
DOI
10.1109/TEC.2006.875469
Filename
4207477
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