Power Quality Improvement Using Dynamic Voltage Restorer on Grid-Connected Wind Energy System

M. Yadav, P. Sujatha, P. B. Kumar
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Abstract

Reduction of fossil fuels and increasing technology made importance of wind generation as renewable energy sources. With increasing number of wind farms fed to grid increases grid fault issues due to various wind systems disconnected from grid during grid faults. To get better grid operation, wind farms are probable to be carried during disturbance related to grid faults extensively known as fault ride through capability. In proposed system a fault ride through method in wind farm management system connected to grid is investigated in term of critical clearing time. This paper examines the use of dynamic voltage restorer on the enhancement of fixed-speed wind generator systems. The controller capability performance, drive performance, and cost factor are considered. Simulation is performed using MATLAB Simulink for constant speed wind generators with closed-loop controller-based DVR are tested. The constant speed drive called synchronous generator-based wind system feed to an infinite bus system. Simulation results show the wind system with DVR has better fault ride-through capability other compensated voltages and is more efficient in minimizing voltage fluctuations called sag/swell and wind generator’s speed. Additionally, DVR aids wind generators to maintain voltage sag/swell with the grid limits requirements with economical as compared to other voltage compensating systems.
利用动态电压恢复器改善并网风电系统电能质量
化石燃料的减少和技术的提高使风力发电作为可再生能源变得重要。随着并网风电场数量的增加,由于各种风力系统在电网故障期间与电网断开,导致电网故障问题日益严重。为了获得更好的电网运行,风电场可能会在电网故障引起的干扰期间运行,即所谓的故障穿越能力。在该系统中,从临界清除时间的角度研究了并网风电场管理系统的故障穿越方法。本文研究了动态电压恢复器在定速风力发电系统中的应用。考虑了控制器性能、驱动器性能和成本因素。利用MATLAB Simulink对恒速风力发电机采用基于闭环控制器的DVR进行了仿真测试。将等速驱动称为同步发电机的风力系统馈给无限母线系统。仿真结果表明,采用DVR的风力系统在其他补偿电压下具有更好的故障穿越能力,在减小电压起伏和风力发电机转速方面更有效。此外,与其他电压补偿系统相比,DVR帮助风力发电机在电网限制条件下保持电压下降/膨胀,经济实惠。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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