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  • 标题:Modeling & Designing of A Novel Multilevel STATCOM With SVPWM Fed VSC For The Dynamic Stability Improvement Of A Grid-Connected Offshore wind Farm
  • 本地全文:下载
  • 作者:T Venkatesh ; Y Narendra
  • 期刊名称:International Journal of Innovative Research in Science, Engineering and Technology
  • 印刷版ISSN:2347-6710
  • 电子版ISSN:2319-8753
  • 出版年度:2017
  • 卷号:6
  • 期号:5
  • 页码:7795
  • DOI:10.15680/IJIRSET.2017.0605064
  • 出版社:S&S Publications
  • 摘要:This paper deals with the development of a Mat lab-simulink model of a new proposed scheme for gridconnected off shore wind farm (OWF) and marine current farm (MCF) on a static synchronous compensator(STATCOM). The purpose of this simulation Model to getting better damping enhancement and voltage control byusing a novel SVPWM technique. An equivalent Doubly fed Induction Generator is used here to operate the Off shorewind farm. To design a damping controller for this proposed scheme model control theory is used here for getting theeffective characteristics. The proposed scheme of this AC bus system can easily control the voltage fluctuations. Powerquality in distribution system has been the major issue now-a-days. Utility distribution networks, sensitive industrialloads and critical commercial operations suffer from various types of power quality problems like voltage sag, dynamicStability service interruptions total harmonic distortion (THD) etc. Multi-level inverters are the best form to solve theseproblems. The general structure of multilevel inverter is to synthesize sinusoidal voltage waveform from several levelsof voltages typically obtained from capacitor voltage source. In this paper Space Vector Pulse Width Modulation(SVPWM) technique is employed for the 5-level multi inverter and both these techniques are compared along with theapplication of STATCOM. It can be concluded from the simulated results that the proposed STATCOM joined with thedesigned damping controller is very effective to Balance the studied system under disturbance conditions.
  • 关键词:off shore wind farm; marine current farm; Space Vector Pulse Width Modulation; STATCOM
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