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首页> 外文期刊>International journal of electrical power and energy systems >Ultra-high-speed transient-based directional relay for AC transmission lines connected to LCC-HVDC inverter station
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Ultra-high-speed transient-based directional relay for AC transmission lines connected to LCC-HVDC inverter station

机译:用于LCC-HVDC变频站的AC传输线的超高速瞬态方向继电器

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摘要

Commutation failure (CF) is a common phenomenon existing in the LCC-HVDC system, which threatens the normal operation of AC line protection near the inverter side. To solve this problem, this paper proposes an ultrahigh-speed transient based directional protection method based on synchrosqueezing S transform (SST). Firstly, the frequency characteristics of the AC bus near the inverter side and the effect of CF on the action of the relay protection are analyzed in detail. Then, this paper analyzes the propagation mechanism of fault transient components by grid method, and proposes a protection criterion based on the transient energy ratio of forward and reverse current traveling wave fault components, which makes the protection scheme with higher reliability. To adapt to the wildly existed high frequency-low amplitude transient signals, this paper utilizes the novel SST for signal processing. SST takes advantage of S transform and synchrosqueezing wavelet transform, and it is more efficient and convenient. Based on the project parameters of the Yun-Guang LCC-HVDC system, a PSCAD simulation model is established. Extensive simulation tests and comparison with other algorithms verify the superiority of the proposed protection method under various fault conditions, as well as its immunity to CF.
机译:换向故障(CF)是LCC-HVDC系统中存在的常见现象,其威胁逆变器侧附近交流线路保护的正常运行。为解决这个问题,本文提出了一种基于同步谐波S变换(SST)的超高速瞬态方向保护方法。首先,详细分析了逆变器侧附近交流总线的频率特性和CF对继电器保护作用的影响。然后,本文通过网格方法分析了故障瞬态组件的传播机制,并提出了基于前向和反向电流行波故障组件的瞬态能量比的保护标准,这使得具有更高可靠性的保护方案。为了适应良好存在的高频低幅度瞬态信号,本文利用了新颖的SST进行信号处理。 SST利用了S变换和同步调节小波变换,更高效,方便。基于云光LCC-HVDC系统的项目参数,建立了PSCAD仿真模型。广泛的仿真试验和与其他算法的比较验证了各种故障条件下提出的保护方法的优势,以及其对CF的免疫力。

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