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首页> 外文期刊>International journal of electrical power and energy systems >Voltage stability assessment and enhancement of power grid with increasing wind energy penetration
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Voltage stability assessment and enhancement of power grid with increasing wind energy penetration

机译:随着风能渗透的电压稳定性评估和电网增强

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This paper presents the voltage stability assessment of power system with increasing wind energy penetration. The effects of increasing Doubly-Fed Induction Generator-based Wind Energy Conversion System (DFIG-WECS) penetration in the power system have been investigated in this work. Active Power-Voltage (PV) analysis was employed to determine the voltage stability limits in terms of the maximum loadability limit within which stable operation of the grid can be guaranteed as the wind energy penetration increases. The analyses in this work were carried out both for normal and contingency operations of the grid. IEEE 14-bus test system was used as the study case. Simulations were carried out using DigSilent PowerFactory software and results analyses were done using MATLAB. Furthermore, the effects of integrating DFIG-WECS on the loading of essential power system equipment are investigated. The results show that the maximum loadability limit of the study system increases with increasing DFIG-WECS power penetration up to 100%. However, the overloading effects on critical transmission lines presents a definitive limit to the allowable practical penetration level, which is determined to be 28.06%. This limit can be improved to 29.88%, 46.3% and 52.23% by Thyristor-Controlled Series Capacitor (TCSC) application on Line 9-14, upgrading Line 9-14 to double circuit, and upgrading both Line 9-14 and Line 13-14 to double circuit respectively. Thus, effective line enhancement and reactive power compensation strategy such as those offered by FACTS devices are required for a voltage-stable operation of the grid with increasing wind energy penetration.
机译:本文提出了随着风能渗透的电力系统的电压稳定性评估。在这项工作中研究了增加双馈辅助发电机基风能转换系统(DFIG-WECS)穿透的效果。采用有源电压(PV)分析来确定最大可负载性极限的电压稳定性限制,因为风能渗透增加,可以保证电网的稳定操作。这项工作中的分析是针对网格的正常和应急操作进行的。 IEEE 14总线测试系统被用作研究案例。使用Digsilent PowerFactory软件进行仿真,并使用MATLAB进行结果分析。此外,研究了整合DFIG-WECS对基本电力系统设备装载的影响。结果表明,研究系统的最大可加载性极限随着DFIG-WECS功率渗透率的增加而增加,高达100%。然而,对临界传输线的过载效果对允许的实际穿透水平具有明确的限制,其被确定为28.06%。通过晶闸管控制的串联电容器(TCSC)施加在线9-14,将该限制提高到29.88%,46.3%和52.23%,将线9-14升级到双电路,并升级线9-14和线路13-图14分别为双电路。因此,需要有效的线增强和无功功率补偿策略,例如由事实设备提供的那些,用于电网的电压稳定运行随着风能渗透而增加。

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