Title :
Discrete-time design of adaptive current controller for interior permanent magnet synchronous motors (IPMSM) with high magnetic saturation
Author :
Peters, William ; Bocker, Joachim
Author_Institution :
Paderborn Univ., Paderborn, Germany
Abstract :
IPMSM for automotive traction applications exhibits a rather high magnetic saturation as a result of the maximization of power and torque densities. Additionally due to the high speed range high electrical frequencies in proportion to the converter switching frequencies occur. That results in a small number of samplings per electrical fundamental. Both effects have to be taken into account to design a suitable current controller. In this paper a discrete-time IPMSM model considering parameter variations due to magnetic saturation as well as the effect of a small number of sampling instants per electrical rotation is derived. Then the design of an adaptive current controller is presented and evaluated by experimental results.
Keywords :
control system synthesis; discrete time systems; electric current control; machine control; permanent magnet motors; power convertors; synchronous motors; traction motors; adaptive current controller; automotive traction applications; converter switching frequencies; discrete-time IPMSM model; discrete-time design; high magnetic saturation; high speed range high electrical frequencies; interior permanent magnet synchronous motors; parameter variations; power density maximization; sampling instants-per-electrical rotation; samplings-per-electrical fundamental; torque density maximization; Current control; Current measurement; Gain measurement; Inductance; Saturation magnetization; Torque; Voltage control;
Conference_Titel :
Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE
Conference_Location :
Vienna
DOI :
10.1109/IECON.2013.6700225