DocumentCode :
150729
Title :
Hexagon voltage manipulating control (HVMC) for AC motor drives operating at voltage limits
Author :
Jul-Ki Seok ; SeHwan Kim
Author_Institution :
Power Conversion Lab., Yeungnam Univ., Gyeongsan, South Korea
fYear :
2014
fDate :
14-18 Sept. 2014
Firstpage :
1707
Lastpage :
1714
Abstract :
This paper proposes a hexagon voltage manipulating control (HVMC) method for ac motor drives operating at voltage limits. The command output voltage can be simply determined by the torque command and the hexagon voltage boundary in the absence of PI control gains, additional MTPV tracking controllers, and observers for closed-loop control. These attributes reduce the time and effort required for the calibration of the controller in the nonlinear voltage-limited region. The proposed hexagon voltage manipulating controller (HVMC) accomplishes the “true” maximum available voltage utilization, allowing a higher efficiency than that of the current vector controller (CVC) alone in the MTPV domain. Model-based voltage control (MVC) or CVC can be performed under the MTPA region and control authority is handed automatically over to the proposed HVMC in the voltage shortage region. Successful application of the control approach has been corroborated by a graphical and analytical analysis. The proposed control approach is potentially applicable to a broad family of control designs for ac drives.
Keywords :
AC motor drives; electric current control; machine control; nonlinear control systems; torque control; voltage control; AC motor drives; CVC; HVMC method; MTPV tracking controllers; MVC; PI control gains; ac drives control designs; analytical analysis; closed-loop control; command output voltage; current vector controller; graphical analysis; hexagon voltage boundary; hexagon voltage manipulating control method; maximum-torque-per-voltage control; model-based voltage control; nonlinear voltage-limited region; observers; torque command; true maximum available voltage utilization; voltage limits; voltage shortage region; AC motors; Couplings; Stators; Synchronous motors; Torque; Vectors; Voltage control; Ac motor drives operating at voltage limits; hexagon voltage manipulating control (HVMC); maximum available voltage utilization; model-based voltage control (MVC);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2014 IEEE
Conference_Location :
Pittsburgh, PA
Type :
conf
DOI :
10.1109/ECCE.2014.6953624
Filename :
6953624
Link To Document :
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