DocumentCode :
3566250
Title :
Real-time implementation of d-q control for grid connected three phase voltage source converter
Author :
Razali, Azziddin M. ; Rahman, M.A. ; Rahim, Nasrudin A.
Author_Institution :
Univ. of Tech. Melaka, Durian Tunggal, Malaysia
fYear :
2014
Firstpage :
1733
Lastpage :
1739
Abstract :
This paper investigates a new approach to develop and implement a virtual flux oriented control (VFOC) for the front-end three phase bidirectional voltage source converter (VSC) by adapting the principle operations of voltage oriented control (VOC) and power estimation used in virtual flux direct power control (VFDPC). The proposed VFOC operates with minimal number of sensors by avoiding the used of ac voltage supply sensors. In addition, the proposed control scheme utilizes the direct and quadrature (d-q) decoupling and feed-forward components to enhance the performance of front-end VSC during load and supply voltage disturbances. The steady-state as well as the dynamic performance of the proposed controller is presented and analyzed by means of the Matlab simulation, and verified through experiment. The ac-dc converter utilizing VFOC is able to produce adjustable dc output voltage, fixed switching frequency, unity power factor and low harmonic distortion of the line current.
Keywords :
AC-DC power convertors; feedforward; harmonic distortion; power control; power factor; power grids; voltage control; AC-DC converter; Matlab simulation; VFDPC; VFOC; VOC; VSC; d-q control; dc output voltage adjustment; direct-and-quadrature decoupling; feedforward components; fixed switching frequency; front-end three phase bidirectional voltage source converter; grid connected three phase voltage source converter; load voltage disturbances; low harmonic distortion; power estimation; real-time implementation; supply voltage disturbances; unity power factor; virtual flux direct power control; virtual flux oriented control; voltage oriented control; Converters; Current control; Reactive power; Sensors; Vectors; Voltage control; Voltage measurement; active and reactive power; grid virtual flux oriented control (VFOC); power factor correction; vector current control; voltage source converter;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Industrial Electronics Society, IECON 2014 - 40th Annual Conference of the IEEE
Type :
conf
DOI :
10.1109/IECON.2014.7048736
Filename :
7048736
Link To Document :
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