Power Quality Improvement of DFIG using FLC Based Variable Wind Turbines by IPC Method
M. Bhanu Divya Bharathi1, P. Krishna Chaitanya2, K. Sandhya Rani3

1M. Bhanu Divya Bharathi, Department of Electrical and Electronics Engineering, Pragati Engineering College, Surampalem, East Godavari Dist., (Andhra Pradesh). India.
2P. Krishna Chaithanya, Department of Electrical and Electronics Engineering, Pragati Engineering College, Surampalem, East Godavari Dist., (Andhra Pradesh). India.
3K. Sandhya Rani, Department of Electrical and Electronics Engineering, Pragati Engineering College, Surampalem, East Godavari Dist., (Andhra Pradesh). India.

Manuscript received on 10 December 2016 | Revised Manuscript received on 18 December 2016 | Manuscript Published on 30 December 2016 | PP: 43-50 | Volume-6 Issue-2, December 2016 | Retrieval Number: B4785126216/16©BEIESP
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© The Authors. Blue Eyes Intelligence Engineering and Sciences Publication (BEIESP). This is an open access article under the CC-BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)

Abstract: Because of the wind speed variation, breeze shear along with tower shadow effects, grid connected wind generators are the options for power fluctuations which could produce sparkle during constant operation. This paper presents a type of an MW-level varying speed windmill with a new doubly feasted induction generator to analyze the Flicker emission along with mitigation difficulties. Fuzzy logic controller (FLC) was designed to obtain maximum power extraction at low wind speeds to limit power extraction at 1.5MW nominal power set point. The Fuzzy logic based IPC (Individual Pitch Control) scheme is proposed along with the individual message controller is made using generator active power along the wind turbine. A 1.5MW horizontal axis breeze turbine model was designed for tuning as well as simulation performance is studied and the results show the damping of this generator active power by IPC is an efficient means for flicker minimization of varying speed wind generators during constant operation.
Keywords: Flicker Mitigation, IPC, Variable Speed Wind Turbine, DFIG, FLC.

Scope of the Article: Quality Control