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Propagation of flicker in electric power networks due to wind energy conversions systems

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TLDR
In this article, a frequency domain method to study flicker propagation is presented, which is based on propagation of frequency components from WECS output currents throughout the grid, and an algorithm for flicker measurement in the frequency domain, which allows Pst calculation is proposed.
Abstract
Wind energy conversion systems (WECS) produce fluctuating output power, which may cause voltage fluctuations and flicker. Flicker assessment in networks may be difficult since its evaluation requires long computing time and special procedures to calculate the flicker severity index, Pst. In this paper, a frequency domain method to study flicker propagation is presented. This method is based on propagation of frequency components from WECS output currents throughout the grid. In this way, a fast flicker analysis in a network of any size can be performed. Also, an algorithm for flicker measurement in the frequency domain, which allows Pst calculation, is proposed. Several study cases have been performed, and results have been compared with time domain simulations, showing good agreement between them.

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Citations
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Journal ArticleDOI

The spectrum of power from wind turbines

TL;DR: In this paper, the power spectral density of the output of wind turbines provides information on the character of fluctuations in turbine output, and both 1-second and 1-hour samples are used to estimate the power spectrum of several wind farms.
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Voltage regulation with STATCOMs: modeling, control and results

TL;DR: In this article, a system modeling and control design for fast load voltage regulation using static compensators (STATCOMs) is presented, which gives a clear representation of load voltage magnitude and STATCOM reactive current on an instantaneous basis.
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Simulation of a Wind Turbine With Doubly Fed Induction Generator by FAST and Simulink

TL;DR: In this paper, three simulation programs, TurbSim, FAST, and Simulink, are used to model the wind, mechanical and electrical parts of a wind turbine, and its controllers.
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A Control Scheme for PWM Voltage-Source Distributed-Generation Inverters for Fast Load-Voltage Regulation and Effective Mitigation of Unbalanced Voltage Disturbances

TL;DR: A control scheme for grid-connected pulsewidth-modulated voltage-source inverters featuring fast load-voltage regulation and effective mitigation of unbalanced voltage disturbances and a newly designed deadbeat current control algorithm is presented.
Journal ArticleDOI

Future research directions for the wind turbine generator system

TL;DR: In this paper, the authors provide various new directions to the future wind energy researchers to improve the wind turbine aerodynamics, electric generators with improved control of power electronics and lower cost energy storage system for designing a reliable wind turbine generator system.
References
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Book

Power System Quality Assessment

J. Arrillaga
TL;DR: Power Quality Indices and Standards, Power Assessment Under Waveform Distortion, and Power Quality Monitoring: Evaluation of Power System Harmonic Distortion.
Journal ArticleDOI

Power quality measurements performed on a low-voltage grid equipped with two wind turbines

TL;DR: In this paper, the power quality of a lowvoltage grid with two wind turbines is investigated and the spectrum of the power is determined so that the presence of periodic power components can be investigated.
Journal ArticleDOI

Digital measurement of voltage flicker

TL;DR: In this article, the authors proposed a method for direct calculation of flicker level from digital measurements of voltage waveforms using a fast Fourier transform (FFT) as the first step in the computation.
Journal ArticleDOI

Digital algorithms for measurement of voltage flicker

TL;DR: In this paper, the authors focused on the pitfalls of the fast Fourier transform, which is the spectrum of voltage fluctuation signals, and the digital algorithms used to calculate voltage flicker are discussed.

Power quality of wind turbines and their interaction with the grid

G. Gerdes, +1 more
TL;DR: In this article, the authors present examples of the measurements according to the guideline and show the grid interactions occurring during the operation of different wind turbines and how they possibly could be diminished.
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