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A New Method to Detect Single-Phase Fault Feeder in Distribution Network by Using S-Transform

机译:使用S-Transform将通过S-Transform检测分配网络中的单相故障馈线的新方法

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Traveling wave consists of the frequencies ranging from tens of kHz to hundreds of kHz in distribution network with single-phase fault, S-transform is implemented to detect the fault line in distribution network from the tens of kHz high frequency transient component of the fault traveling wave. The moment depending on the maximum component in the highest frequency row of the S-transform magnitude matrix of zero modal bus voltage corresponds to the real mutation moment of zero modal bus voltage. Then the moment of the first fault traveling wave front is calibrated and recorded as the beginning moment of single-phase fault occurrence. At this moment, the phases of initial current traveling wave front detected by TA at the protection relay device between fault line and sound lines are opposite. The S-transform is implemented to fault zero modal currents. The argument difference of the highest frequency row between fault line and sound line is 180o after fault, which makes fault line detectible. The proposed method detects the phase characteristics of traveling wave signal from the level of relatively low high-frequency transient component, which can not only reduce the requirements of traveling wave acquisition and processing speed, but also enhance the capacity of high resistance tolerance and anti-noise ability. The simulation results verified the feasibility and validity of this method.
机译:行波由频率范围从几十kHz到几百kHz的在配电网络与单相故障的,被实现为从几十故障行进的千赫的高频瞬态分量的检测在配电网故障线路S变换海浪。取决于频率最高行中的最大分量在时刻S变换的零个模总线电压对应幅度矩阵到零模母线电压的实际突变的时刻。然后,将第一故障行波前的瞬间被校准并记录为单相故障发生的开始时刻。此时,初始电流的行波前的相位在故障线路和声音线之间的保护继电器装置检测由TA是相反的。的S变换被实现为故障零个模电流。故障,这使得故障线路可检测后的断层线和声音线之间的最高频率行的幅角差180度是。所提出的方法检测从相对低的高频瞬态分量的电平,这不仅可以降低行波的采集和处理速度的要求的行波信号的相位特性,同时也提高高电阻耐受性和能力抗噪能力。仿真结果验证了该方法的可行性和有效性。

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