DocumentCode :
1924854
Title :
A speed-sensorless startup method of an induction motor driven by a modular multilevel cascade inverter (MMCI-DSCC)
Author :
Okazaki, Yasuo ; Hagiwara, Manabu ; Akagi, Hirofumi
Author_Institution :
Dept. of Electr. & Electron. Eng., Tokyo Inst. of Technol., Tokyo, Japan
fYear :
2013
fDate :
15-19 Sept. 2013
Firstpage :
1473
Lastpage :
1480
Abstract :
The modular multilevel cascade inverter based on double-star chopper-cells (MMCI-DSCC) has been expected as one of the next-generation multilevel PWM inverters for mediumvoltage motor drives. This paper has theoretical and experimental discussions on a practical speed-sensorless startup method for an induction motor driven by the MMCI-DSCC from the standstill to a middle speed. This motor drive is suitable, especially for large-capacity fan-/blower-like loads, the torque of which is proportional to a square of the motor mechanical speed. Unlike the so-called “voltz-per-heltz” or “slip-frequency” controls, three-phase stator currents are based on “feedback” control, whereas their amplitude and frequency are based on “feedforward” control. Although the motor drive has no speed sensor attached to the motor shaft, this method makes a slow startup stable with the help of a stator-current feedback loop. Experimental results obtained from a 400-V, 15-kW downscaled system verify stable operating performance from the standstill to a middle speed of 588 min-1 loaded with 60%.
Keywords :
PWM invertors; angular velocity control; feedback; feedforward; frequency control; induction motor drives; sensorless machine control; stators; MMCI-DSCC; double-star chopper-cells; downscaled system; fan-blower-like loads; feedback control; feedforward control; induction motor drive; medium- voltage motor drives; modular multilevel cascade inverter; motor mechanical speed; motor shaft; next-generation multilevel PWM inverters; power 15 kW; slip-frequency controls; speed-sensorless startup method; stator-current feedback loop; three-phase stator currents; voltage 400 V; voltz-per-heltz; Induction motors; Motor drives; Stator windings; Torque; Velocity control; Voltage control; Modular multilevel cascade inverters; mediumvoltage induction motor drives; speed-sensorless startup;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2013 IEEE
Conference_Location :
Denver, CO
Type :
conf
DOI :
10.1109/ECCE.2013.6646879
Filename :
6646879
Link To Document :
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