DocumentCode :
666525
Title :
Current harmonic compensation in symmetrical multiphase machines by resonant controllers in synchronous reference frames—Part 2: Computational load
Author :
Yepes, Alejandro ; Malvar, Jano ; Vidal, Ana ; Lopez, Oscar ; Doval-Gandoy, Jesus
Author_Institution :
Appl. Power Electron. Technol. Res. Group, Univ. of Vigo, Vigo, Spain
fYear :
2013
fDate :
10-13 Nov. 2013
Firstpage :
5161
Lastpage :
5166
Abstract :
It has been previously suggested to use multiple reference frame (MRF) structures, based on proportional-integral controllers in synchronous reference frames (SRFs), to suppress current harmonics caused by nonlinearities in multiphase drives. However, the rotational transformations are computationally demanding. In Part 1, the three-phase strategy based on resonant controllers (RCs) implemented in an SRF has been extended to any phase number. Nevertheless, while the computational burden of MRF and multiple RC (MRC) schemes has been assessed for three-phase systems in previous papers, it is yet to be studied for other numbers of phases. Part 2 analyzes the computational load of the MRC and MRF strategies as a function of the phase number and of the highest harmonic order to be compensated. It is proved that the former provides a resource saving with respect to the latter that decreases with the phase number and increases with the highest harmonic order under consideration. It is also concluded that the MRC strategy is particularly preferable in machines with even phase number (e.g., a multiple of six).
Keywords :
PI control; electric current control; harmonics suppression; motor drives; MRC scheme; MRF strategy; SRF; current harmonic compensation; current harmonics suppression; multiphase drive; multiple RC scheme; multiple reference frame structure; phase number; proportional-integral controller; resonant controller; rotational transformation; symmetrical multiphase machine; synchronous reference frame; three-phase strategy; Machine control; current control; digital control; motor drives; multiphase ac drives; variable speed drives;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2013 - 39th Annual Conference of the IEEE
Conference_Location :
Vienna
ISSN :
1553-572X
Type :
conf
DOI :
10.1109/IECON.2013.6699973
Filename :
6699973
Link To Document :
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