首页> 外文期刊>Engineering Technology and Applied Science Research >Application of FVSI, Lmn and CPF Techniques for Proper Positioning of FACTS Devices and SCIG Wind Turbine Integrated to a Distributed Network for Voltage Stability Enhancement
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Application of FVSI, Lmn and CPF Techniques for Proper Positioning of FACTS Devices and SCIG Wind Turbine Integrated to a Distributed Network for Voltage Stability Enhancement

机译:FVSI,Lmn和CPF技术在FACTS装置和SCIG风力发电机正确定位到分布式网络中的正确定位中的应用,以提高电压稳定性

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Induction power generators are the most popular wind energy conversion systems (WECS) because they do not require synchronization units. However, they usually draw a huge quantity of reactive power during disturbances. Hence, incorporating wind power into power networks may cause voltage instability. This paper presents the usage of STATCOM and SSSC FACTS devices for voltage stability enhancement of a distribution network with a squirrel cage induction generator (SCIG) wind power turbine. The continuation power flow (CPF) approach is utilized as a tool to determine the most suitable position of SCIG in the system. Also, voltage stability indices (FVSI and Lmn) are employed to estimate the stability margin of the system by figuring the weakest transmission lines and buses in order to locate the appropriate position where the FACTS devices should be installed. A comparison of the suitability of the FACTS devices to restore system stability was evaluated under 3-phase fault conditions. The results illustrated that STATCOM behaves better than SSSC when the system is restoring from a fault. Simulations and voltage stability assessment were carried out on the IEEE 14 bus test scheme using the PSAT simulation software package.
机译:感应发电机是最流行的风能转换系统(WECS),因为它们不需要同步单元。但是,它们通常会在干扰期间汲取大量无功功率。因此,将风力发电并入电网可能会导致电压不稳定。本文介绍了使用STATCOM和SSSC FACTS装置来增强鼠笼式感应发电机(SCIG)风力涡轮机的配电网络的电压稳定性。持续功率流(CPF)方法被用作确定SCIG在系统中最合适位置的工具。同样,电压稳定性指数(FVSI和Lmn)用于通过确定最弱的传输线和总线来估计系统的稳定性裕度,以便定位应该安装FACTS设备的适当位置。在三相故障条件下,对FACTS设备恢复系统稳定性的适用性进行了比较。结果表明,当系统从故障中恢复时,STATCOM的性能优于SSSC。使用PSAT仿真软件包,在IEEE 14总线测试方案上进行了仿真和电压稳定性评估。

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