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Accelerated trip of power transmission line based on biorthogonal wavelet analysis

机译:基于双正交小波分析的输电线路加速跳闸

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This paper presents a novel approach to accelerated trip of power transmission lines using biorthogonal wavelet transform to improve the performance of protection relays. The existing principle derived from the second abrupt changes of the sequence currents to accelerate trip has been widely applied, while a fault occurs in the second zone of the distance protection. However, a lower sensitivity has been observed for some specific system parameters and fault types for which the second abrupt changes of sequence currents are particularly faint. The wavelet analysis has an outstanding characteristics to extract signal components, by contrast to the conventional Fourier analysis which is inefficient to detect the faint abrupt signal. A fourth-order biorthogonal wavelet decomposition algorithm is proposed in this paper, which possesses the capability of fast calculation, partitioning the higher frequency band and linear phase. This algorithm, provided as an accelerated trip scheme, can efficiently extract the faint second abrupt changes of the sequence currents and is able to deal with the dead-zone problem of conventional protection techniques. The simulation result obtained using MATLAB/SIMULINK shows the feasibility and efficiency of the proposed approach.
机译:本文提出了一种新颖的方法,利用双正交小波变换来加速输电线路的跳闸,以提高保护继电器的性能。从顺序电流的第二次突变以加速跳闸得出的现有原理已被广泛应用,而在距离保护的第二个区域中发生了故障。但是,对于某些特定的系统参数和故障类型,已经观察到较低的灵敏度,对于这些参数和故障类型,顺序电流的第二次突然变化特别微弱。与传统的傅立叶分析相比,小波分析具有出色的特征来提取信号分量,而传统的傅立叶分析效率低,无法检测微弱的突变信号。提出了一种四阶双正交小波分解算法,该算法具有快速计算,划分较高频段和线性相位的能力。作为加速跳闸方案提供的该算法可以有效地提取顺序电流的微弱的第二突然变化,并且能够处理常规保护技术的死区问题。使用MATLAB / SIMULINK获得的仿真结果表明了该方法的可行性和效率。

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