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Transient Stability Improvement of a Squirrel Cage Induction Generator in Wind Farm Using STATCOM With Supercapacitor

机译:带有超级电容器的STATCOM改善风电场中鼠笼式感应发电机的暂态稳定性

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The increasing demand for electric power combined with depleting natural resources has led to the substantial improvements in the usage of renewable energy systems such as wind and solar especially among the developing countries. Today, wind turbine deployment shows the fastest growth both nationally and globally. Wind Electric Generators (WEG) were earlier used for isolated power supplies especially in remote locations and rural areas. In recent times, grid-connected wind electricity generation shows the highest rate of growth, achieving global annual growth rates in the order of 20-28%. According to World Wind Energy report 2010, published by World Wind Energy Association, Germany, worldwide installed capacity of wind energy reached 196630 MW out of which 37642 MW were added in 2010. Squirrel Cage Induction Generator (SCIG) is the most used generator type for WEGs One of the major issues concerning SCIG coupled to wind turbine is voltage instability problem when it is interconnected with grid. It occurs in a power system when the reactive power demand by SCIG during grid faults and heavy loading conditions is not met by the capacitor banks installed near SCWEG. This paper examines the use of STATCOM (STATic synchronous COMpensator) with Super Capacitor Energy Storage System (SCESS) to improve power quality of SCIG in the event of any unbalanced or balanced fault in the grid. Simulation is done in MATLAB SIMULINK for various conditions. Due to the fast response of supercapacitor in developing the counterbalancing electromagnetic torque, shaft acceleration is prevented and the transient stability of SCIG is increased so that it can meet the new interconnection grid code requirements. Further it is observed that the settling time of SCIG after the fault clearance is also reduced. System transients are suppressed and normal conditions are quickly restored with STATCOM and supercapacitor.
机译:对电力的需求不断增加,加上自然资源的枯竭,导致风能和太阳能等可再生能源系统的使用有了实质性的改善,特别是在发展中国家中。如今,风力涡轮机的部署在全国和全球都显示出最快的增长。风力发电机(WEG)较早用于隔离电源,尤其是在偏远地区和农村地区。近年来,并网风力发电的增长率最高,达到了全球年增长率的20-28%。根据德国世界风能协会发布的《 2010年世界风能报告》,全球风能装机容量达到196630兆瓦,其中2010年增加了37642兆瓦。鼠笼式感应发电机(SCIG)是最常用的发电机类型。 WEG与SCIG耦合到风力涡轮机的主要问题之一是与电网互连时的电压不稳定性问题。当在SCWEG附近安装的电容器组无法满足电网故障和重载条件下SCIG的无功功率需求时,就会在电力系统中发生这种情况。本文研究了在电网出现任何不平衡或平衡故障的情况下,将STATCOM(静态同步补偿器)与超级电容器储能系统(SCESS)配合使用以改善SCIG的电能质量的问题。在MATLAB SIMULINK中针对各种条件进行了仿真。由于超级电容器在产生平衡电磁转矩方面的快速响应,可防止轴加速度并提高SCIG的瞬态稳定性,使其能够满足新的互连电网规范要求。进一步观察到,故障清除后SCIG的建立时间也缩短了。使用STATCOM和超级电容器可以抑制系统瞬态,并迅速恢复正常状态。

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