DocumentCode :
678283
Title :
Decoupling model based predictive torque control algorithm with low switching frequency for flux-switching permanent magnet synchronous machines
Author :
Wei Xu ; Yu Xinghuo ; Wenwu Yang
Author_Institution :
Sch. of Electr. & Comput. Eng., RMIT Univ., Melbourne, VIC, Australia
fYear :
2013
fDate :
Sept. 29 2013-Oct. 3 2013
Firstpage :
1
Lastpage :
6
Abstract :
Flux-switching permanent magnet machine (FSPMM) has received great attention during the past ten years due to its great merits of strong mechanical robustness, high efficiency, strong thermal dissipation ability, etc. However, it suffers from severe torque and flux ripples at different rotor positions for its variable magnetic resistance and equivalent air gap length, which cannot be solved completely by electromagnetic optimal design alone. In order to increase the drive performance of FSPMM, such as dynamic response and stable smoothness of torque, an improved model based predictive torque control (MPTC) algorithm is proposed in this paper. By help of the cost function modulation strategy, the FSPMM torque and flux ripples are reduced obviously, accompanied with the minimized converter switching frequency. Comprehensive simulations validate relevant theoretical analysis.
Keywords :
machine control; permanent magnet motors; predictive control; rotors; synchronous motor drives; torque control; FSPMM; MPTC algorithm improvement; converter switching frequency minimization; cost function modulation strategy; decoupling model; drive performance; dynamic response; flux ripples; flux-switching permanent magnet synchronous machines; mechanical robustness; model based predictive torque control algorithm; predictive torque control algorithm; rotor positions; thermal dissipation ability; torque ripples; variable magnetic resistance; Torque; Vectors; cost function; dynamic response; flux-switching permanent magnet machine (FSPMM); model based predictive torque control (MPTC); torque and flux ripples;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power Engineering Conference (AUPEC), 2013 Australasian Universities
Conference_Location :
Hobart, TAS
Type :
conf
DOI :
10.1109/AUPEC.2013.6725464
Filename :
6725464
Link To Document :
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