并网风力发电系统稳定性增强与总谐波畸变降低

S. Joshi, G. Bharadwaj, Ravindra Singh Chauhan, Virendra Sharma, J. K. Deegwal
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引用次数: 1

摘要

本文主要研究并网风力发电系统输出电压稳定性的增强问题。风能在我们的星球上是免费和充足的。由于风能的可持续性,以电力的形式从自然风中获取能量是最可行的。为了使风力发电系统具有较高的电压稳定性,需要有效的控制器。概述了全球能源前景,特别关注风能。总结了各种控制策略和最大功率点跟踪方法。本文介绍了世界范围内的风力发电装置和净零排放策略。为提高风力发电系统输出电压的稳定性和减小总谐波畸变,设计了基于比例积分导数控制器的静态同步补偿器。对有比例积分微分控制器和无比例积分微分控制器的风能电压波形进行了对比研究。本文提出了风力发电系统的MATLAB simulink模型、静态同步补偿器和比例积分导数控制器的设计与实现。为了验证所提控制器的有效性,进行了大量的仿真分析。获得的结果显示了所建议工作的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Augmenting Stability and Total Harmonic Distortion Reduction in Grid Coupled Wind Power Generation System
This paper pivoting on augmenting stability in generated voltage output from grid coupled wind power generation system. Wind power is available freely and in ample quantity on our planet. Due to sustainable nature of wind energy, it is most viable to harvest energy from natural wind in the form of electricity. For running the wind power generation system with higher voltage stability, effective controller is needed. An overview of global energy scenario is summarized with special attention on wind energy. Summary of various control strategies and maximum power point tracking methods are exhibited. Worldwide wind capacity plant installations and net zero emission strategy is presented in this paper. Static synchronous compensator with proportional integral derivative based controller is designed to increase the stability and reduce total harmonic distortion of the voltage output from wind power generation system. Comparative study between voltage waveforms obtained from wind energy with and without proportional integral derivative controller is displayed. The work in this paper proposed the design and implemented MATLAB simulink model of wind power generation system, static synchronous compensator and proportional integral derivative controller. For getting validity of the proposed controller, immense simulation analysis has been done. The obtained results exposed the utility of proposed work.
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