DocumentCode
1998656
Title
Time optimal and loss minimizing deadbeat-direct torque and flux control for interior permanent magnet synchronous machines
Author
Lee, Jae Suk ; Lorenz, Robert D. ; Valenzuela, M. Anibal
Author_Institution
WEMPEC, Univ. of Wisconsin-Madison, Madison, WI, USA
fYear
2012
fDate
15-20 Sept. 2012
Firstpage
2568
Lastpage
2575
Abstract
This paper presents time optimal control of an interior permanent magnet synchronous machine (IPMSM) in voltage- and current- limited conditions using deadbeat-direct torque and flux control (DB-DTFC). A commanded air-gap torque and flux can be achieved by the end of each PWM period using DB-DTFC. However, it may take several PWM periods to achieve a desired torque that is physically infeasible in one step when operating near the voltage limit. The large torque command can be shaped as a feasible trajectory so that the deadbeat torque and flux is achieved for every sample time instant (switching period) along the trajectory. In this paper, the feasible trajectory is dynamically optimized to achieve a large torque command in the shortest time during voltage- and current-limited operation. Loss minimizing stator flux linkage is used during steady state operation to reduce computational complexity of the dynamic optimization and to operate the IPMSM at the loss minimizing condition. The voltage- and current-limited operation of IPMSM drives is evaluated in both simulation and experiment in this paper.
Keywords
machine control; magnetic flux; magnetic variables control; optimal control; permanent magnet machines; synchronous machines; torque control; PWM period; air-gap torque; current limited condition; flux control; interior permanent magnet synchronous machines; large torque command; loss minimizing deadbeat direct torque control; time optimal control; voltage limited condition; Copper; Couplings; Dynamic programming; Optimization; Stators; Torque; Trajectory;
fLanguage
English
Publisher
ieee
Conference_Titel
Energy Conversion Congress and Exposition (ECCE), 2012 IEEE
Conference_Location
Raleigh, NC
Print_ISBN
978-1-4673-0802-1
Electronic_ISBN
978-1-4673-0801-4
Type
conf
DOI
10.1109/ECCE.2012.6342396
Filename
6342396
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