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Please use this identifier to cite or link to this item: http://repository.iitr.ac.in/handle/123456789/22324
Title: Small-Signal Stability Analysis of a Grid-Connected Wind-Turbine Generator Based on Dynamic-Slip Induction Generator
Authors: Wang L.
Chang C.-H.
Tseng C.-C.
Prokhorov A.V.
Mokhlis H.
Huat C.K.
Tripathy, Manoj
Published in: Conference Record - IAS Annual Meeting (IEEE Industry Applications Society)
2021 IEEE Industry Applications Society Annual Meeting, IAS 2021
Abstract: This paper presents the analyzed results of small-signal stability of a wind-turbine generator based on dynamic-slip induction generator (DSIG) connected to an infinite bus through a step-up transformer and a transmission line. The q-d axis equivalent-circuit model is derived to establish the complete system model under three-phase balanced condition. A lead-lag power oscillation damping controller (PODC) for modulating the rotor's external resistance of the studied wind DSIG is designed by using phase-compensation method to improve the damping of the wind DSIG under different operating conditions. The geometric measure of observability is also employed to select a suitable feedback signal for the designed PODC. A systematic method using a frequency-domain approach based on eigenvalue analysis and a time-domain approach based on nonlinear-model simulations are performed to evaluate the effectiveness of the proposed control scheme and the designed PODC. It can be concluded from the simulation results that the rotor's external resistance joined with the designed PODC is capable of improving damping of the studied wind DSIG under different operating conditions. © 2021 IEEE.
Citation: Conference Record - IAS Annual Meeting (IEEE Industry Applications Society) (2021), 2021-October
URI: https://doi.org/10.1109/IAS48185.2021.9677135
http://repository.iitr.ac.in/handle/123456789/22324
Issue Date: 2021
Publisher: Institute of Electrical and Electronics Engineers Inc.
Keywords: Dynamic-slip induction generator
Geometric measure of observability
Phase-compensation method
Power oscillation damping controller
Rotor's external resistance
Stability
Wind-turbine generator
ISBN: 9.78173E+12
ISSN: 1972618
Author Scopus IDs: 57059516100
57191349386
57191055355
57212545477
8136874200
57202070559
16205441100
Author Affiliations: Wang, L., National Cheng Kung University, Department of Electrical Engineering, Tainan, 701301, Taiwan
Chang, C.-H., National Cheng Kung University, Department of Electrical Engineering, Tainan, 701301, Taiwan
Tseng, C.-C., National Cheng Kung University, Department of Electrical Engineering, Tainan, 701301, Taiwan
Prokhorov, A.V., Tomsk Polytechnic University, Institute of Power Engineering, Tomsk, 634050, Russian Federation
Mokhlis, H., Universiti Malaya, Department of Electrical Engineering, Kuala Lumpur, 50603, Malaysia
Huat, C.K., Universiti Tunku Abdul Rahman, Department of Electrical and Electronic Engineering, Kajang, 43000, Malaysia
Tripathy, M., Indian Institute of Technology Roorkee, Department of Electrical Engineering, Roorkee, 247667, India
Appears in Collections:Conference Publications [EE]

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