DocumentCode :
63823
Title :
Synchronized Operation of DSP-Based Generalized Impedance Controller With Variable-Speed Isolated SEIG for Novel Voltage and Frequency Control
Author :
Chauhan, P.J. ; Chatterjee, J.K. ; Bhere, Haresh ; Perumal, B.V. ; Sarkar, Dipankar
Author_Institution :
Nat. Univ. of Singapore, Singapore, Singapore
Volume :
51
Issue :
2
fYear :
2015
fDate :
March-April 2015
Firstpage :
1845
Lastpage :
1854
Abstract :
In this paper, the performance of a novel two-loop control strategy for a three-phase self-excited induction generator (SEIG), used in wind/microhydro/biogas-based isolated generation schemes, is presented. The implementation of the grid-interactive synchronization of the generalized impedance controller (GIC), an impedance-controlled operation of pulse width modulation (PWM) voltage-source converter, with SEIG is described. The SEIG frequency is tracked using digital phase-locked loop implemented on a dSpace DSP platform. The open-loop SEIG-GIC system is experimentally analyzed for the sensitivity of the SEIG voltage and frequency to GIC modulation index m and phase angle δ. Based on this, a simple and practical control strategy with proportional-integral (PI)-based voltage and frequency feedback loops is evolved for the regulation of the SEIG voltage and frequency. A novel design procedure for both the PI controllers for stable closed-loop operation is presented. The performance of the proposed closed-loop system is experimentally tested under speed and load perturbations.
Keywords :
PI control; PWM power convertors; asynchronous generators; biofuel; closed loop systems; control system synthesis; digital signal processing chips; distributed power generation; frequency control; machine control; phase locked loops; power generation control; power grids; synchronisation; voltage control; wind power plants; DSP-based generalized impedance controller; GIC modulation index; PI controller design; PI-based frequency feedback loop; PI-based voltage loop; PWM voltage source converter; SEIG frequency regulation; SEIG voltage regulation; biogas-based isolated generation scheme; closed loop operation; dSpace DSP; digital phase locked loop; frequency tracking; grid interactive synchronization; load perturbations; microhydro based isolated generation scheme; open loop SEIG-GIC system; phase angle; pulse width modulation; three-phase self-excited induction generator; two-loop control strategy; variable speed isolated SEIG; wind-based isolated generation scheme; Control systems; Frequency control; Frequency modulation; Reactive power; Synchronization; Voltage control; Distributed generation; generalized impedance controller (GIC); grid-interactive inverter; microhydro; self-excited induction generator (SEIG); synchronized operation; voltage and frequency control; wind energy conversion;
fLanguage :
English
Journal_Title :
Industry Applications, IEEE Transactions on
Publisher :
ieee
ISSN :
0093-9994
Type :
jour
DOI :
10.1109/TIA.2014.2356642
Filename :
6895152
Link To Document :
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