DocumentCode :
3680055
Title :
Analytical design of flux-weakening voltage regulation loop in IPMSM drives
Author :
Nicola Bedetti;Sandro Calligaro;Roberto Petrella
Author_Institution :
Gefran, s.p.a., Gerenzano, Varese (Italy)
fYear :
2015
Firstpage :
6145
Lastpage :
6152
Abstract :
Analytical design and adaptation of voltage regulation loop for flux-weakening control of Interior Permanent Magnet Synchronous Motor drives are addressed in this paper. Theoretical analysis of the overall dynamics of the loop has been carried out in recent papers, also taking into account non-linear effects and discrete-time implementation issues. A proper gain adaptation technique was proposed to provide a local linearization, aiming at maximization of the dynamical performance and maintain stability of the loop. Unfortunately no closed-form design method was provided due to the complexity of the transfer function and only graphical analysis of the loop function was shown. In this paper a novel simplified analysis is proposed, which allows analytical design of the regulator gains after the application of a real-time compensation of any non-linearity. Simulations validate the approach, and experimental tests show the feasibility of the technique on a standard drive hardware, leveraging its ease of implementation.
Keywords :
"Voltage control","Regulators","Transfer functions","Bandwidth","Torque","Current control","Inverters"
Publisher :
ieee
Conference_Titel :
Energy Conversion Congress and Exposition (ECCE), 2015 IEEE
ISSN :
2329-3721
Electronic_ISBN :
2329-3748
Type :
conf
DOI :
10.1109/ECCE.2015.7310521
Filename :
7310521
Link To Document :
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