DocumentCode :
20358
Title :
Adaptive noise suppression filter based integrated voltage and frequency controller for two-winding single-phase self-excited induction generator
Author :
Kalla, Ujjwal Kumar ; Singh, Bawa ; Murthy, S.S.
Author_Institution :
Dept. of Electr. Eng., Indian Inst. of Technol., New Delhi, New Delhi, India
Volume :
8
Issue :
8
fYear :
2014
fDate :
11 2014
Firstpage :
827
Lastpage :
837
Abstract :
In this study, an adaptive noise suppression filter based control algorithm is proposed for integrated voltage and frequency controller (IVFC) of a speed governor-free hydro turbine driven single-phase self-excited induction generator (SEIG). A voltage source converter (VSC) is employed to control the terminal voltage of SEIG with adjustable reactive power. It also mitigates the harmonics injected by non-linear loads in the SEIG system. A resistive dump load with a chopper is connected at dc-bus of VSC. The dump load is controlled to regulate the system frequency at varying loads and mechanical power input to the unregulated micro hydro turbine during seasonal changes. The frequency estimation and phase shifting technique is used for frequency estimation and for generation of quadrature signal of point of common coupling voltage. The proposed IVFC is designed, developed and implemented using a digital signal processor for a two-winding single-phase SEIG of 5 kW rating and test results are presented to demonstrate its performance under steady state and dynamic conditions.
Keywords :
adaptive control; asynchronous generators; frequency control; frequency estimation; machine control; reactive power; voltage control; IVFC; VSC; adaptive noise suppression filter based control algorithm; adjustable reactive power; chopper; dc-bus; digital signal processor; dynamic conditions; frequency estimation; integrated voltage and frequency controller; nonlinear loads; phase shifting technique; point of common coupling voltage; power 5 kW; quadrature signal; resistive dump load; seasonal changes; speed governor-free hydro turbine driven SEIG; steady state conditions; terminal voltage control; two-winding single-phase self-excited induction generator; unregulated micro hydro turbine; voltage source converter;
fLanguage :
English
Journal_Title :
Renewable Power Generation, IET
Publisher :
iet
ISSN :
1752-1416
Type :
jour
DOI :
10.1049/iet-rpg.2013.0271
Filename :
6940400
Link To Document :
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