Applications of solid-state fault current limiters for transient stability enhancement of wind power generation systems

Mohanraj Bellie Subramani, Lin-Yu Lu, C. Chu, J. Shieh
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Abstract

Due to recent advocating of the high renewable generation penetration and continuous increasing in load demands, interconnected power systems are subjected to over-rating of circuit breakers and substation equipments. Although various technologies can overcome high short-circuit level problems, none of conventional solutions provides extra transmission capability or ability to control or redirect the power flow. In this paper, the solid-state fault current limiter (SSFCL) will be investigated for transient stability enhancement of practical large-scale power systems. A controllable resistive type fault current limiter (CR-FCL) is first developed for comparative studies. A single DC reactor fault current limiter, which does not require switching device or control system, is then proposed for lower cost and simple operation. Circuit configurations and corresponding simulation models in real-time simulation environments will be investigated in details. By proper locating the transient limiters, transient stability enhancement can be demonstrated through real-time simulator OPAL-RT.
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固态故障限流器在提高风力发电系统暂态稳定性中的应用
近年来,随着可再生能源发电渗透率的不断提高和负荷需求的不断增加,互联电力系统中断路器和变电站设备的额定过高。虽然各种各样的技术可以克服高短路水平的问题,但没有一种传统的解决方案提供额外的传输能力或控制或重定向潮流的能力。本文将研究固态故障限流器(SSFCL)对实际大型电力系统暂态稳定性的增强。本文首先研制了一种可控电阻型故障限流器(CR-FCL)进行对比研究。提出了一种不需要开关装置和控制系统的单直流电抗器故障限流器,其成本较低,操作简单。详细研究了实时仿真环境下的电路配置和相应的仿真模型。通过适当定位暂态限制器,可以通过实时仿真器OPAL-RT验证暂态稳定性的增强。
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