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Journal ArticleDOI

Improved fault ride through capability of DFIG-wind turbines using customized dynamic voltage restorer

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TLDR
A novel hybrid genetic algorithm optimized Elman neural network controller for proton exchange membrane fuel cell supported customized Dynamic Voltage Restorer (DVR) to improve the fault ride-through capability of Doubly Fed Induction Generator (DFIG) based wind power generation systems.
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This article is published in Sustainable Cities and Society.The article was published on 2018-05-01. It has received 98 citations till now. The article focuses on the topics: Wind power & Fault (power engineering).

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Citations
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Journal ArticleDOI

Automated power management strategy for wind power generation system using pitch angle controller

TL;DR: The main objective of this research work is to develop a fuzzy logic–based pitch angle control and to developed a static transfer switch to make power balance between the wind power generation system and the loads.
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Comprehensive Overview of Low Voltage Ride Through Methods of Grid Integrated Wind Generator

TL;DR: This ready-reckoner paper critically reviews and classifies more than 190 research papers on LVRT issues, practices, and available technologies for grid integration in wind energy systems, and it aims to be a quick reference for the researchers, designers, manufacturers, and engineers working in the same field.
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Adaptive hybrid intelligent MPPT controller to approximate effectual wind speed and optimal rotor speed of variable speed wind turbine.

TL;DR: The proposed controller extremely reduces the speed dissimilarity range of wind power generation system, which leads to rationalizing the pulse width inflection of DFIG rotor side converter, which increases the system's reliability and delivers an effective power tracking with reduced converter losses.
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An improved radial basis function neural network control strategy-based maximum power point tracking controller for wind power generation system:

TL;DR: The most promising aspects of the proposed MPPT controller are that it not only extracts maximum available power from wind, but it also rapidly responses to the change in wind speeds and maintains converter with negligible converter losses.
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An improved approach for robust control of dynamic voltage restorer and power quality enhancement using grasshopper optimization algorithm.

TL;DR: The scheme proposed utilizes an error-driven proportional-integral-derivative (PID) controller to guarantee better power quality performance in terms of voltage enhancement and stabilization of the buses, energy efficient utilization, and harmonic distortion reduction in a distribution network.
References
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Journal ArticleDOI

The Electrochemical Behavior of Alkali and Alkaline Earth Metals in Nonaqueous Battery Systems—The Solid Electrolyte Interphase Model

TL;DR: In this article, it is suggested that in practical nonaqueous battery systems the alkali and alkaline earth metals are always covered by a surface layer which is instantly formed by the reaction of the metal with the electrolyte.
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A review of grid code technical requirements for wind farms

TL;DR: In this article, the authors provide an overview of grid code technical requirements regarding the connection of large wind farms to the electric power systems, including active and reactive power regulation, voltage and frequency operating limits and wind farm behaviour during grid disturbances.
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Advanced Control Strategy of DFIG Wind Turbines for Power System Fault Ride Through

TL;DR: In this paper, an advanced control strategy for the rotor and grid side converters of the doubly fed induction generator (DFIG) based wind turbine (WT) to enhance the lowvoltage ride-through (LVRT) capability according to the grid connection requirement is presented.
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Minimum-Threshold Crowbar for a Fault-Ride-Through Grid-Code-Compliant DFIG Wind Turbine

TL;DR: In this article, a minimum threshold rotor-crowbar method is presented to improve fault response by reducing crowbar application periods to 11-16 ms, successfully diverting transient overcurrents, and restoring good power control within 45 ms of both fault initiation and clearance.
Journal ArticleDOI

A Fault Ride-Through Technique of DFIG Wind Turbine Systems Using Dynamic Voltage Restorers

TL;DR: In this paper, a low-voltage ride-through technique of a doubly fed induction generator (DFIG) wind turbine system using a dynamic voltage restorer (DVR) was proposed.
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