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High-Voltage Overhead Line Breakage Protection Based on Voltage Waveform Correlation

机译:基于电压波形相关的高压架空断线保护

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High-voltage overhead line is prone to the break fault due to external forces and lightning strikes. The live line is likely to cause personal injury and death after landing. However, the existing line protection device can only remove the faulty line after the broken line is grounded. A new principle of high voltage overhead line breakage protection based on voltage waveform correlation is proposed. Based on the R-L model of transmission line, the new principle uses the transient voltage information at both ends of the line to calculate the Measured Voltage Difference (MVD) of each phase of the line; and uses the uniform transmission line impedance matrix and the transient current information at both ends of the line to calculate the Calculated Voltage Difference (CVD) of each phase of the line. The waveform correlation coefficient is introduced to measure the correlation degree between MVD and CVD. When there is no fault in line, CVD is almost equal to MVD and the correlation coefficient is close to one. If an internal fault occurs on the line, the correlation coefficient will reduce. After an internal fault is identified, the currents of the two ends are adopted to distinguish the break fault from short-circuit fault of the line. A three-machine nine nodes model is established in PSCAD/EMTDC and the simulation results show that the proposed protection can reliably identify the break fault in different load conditions and different lengths.
机译:高压架空线容易受到外力和雷击的破坏而损坏。带电的电线着陆后可能会造成人身伤害甚至死亡。但是,现有的线路保护装置只能在断线接地后才能去除故障线路。提出了一种基于电压波形相关性的高压架空线路断线保护新原理。新原理基于传输线的R-L模型,利用线路两端的暂态电压信息来计算线路各相的实测电压差(MVD)。并使用均匀传输线阻抗矩阵和线路两端的瞬态电流信息来计算线路各相的计算电压差(CVD)。引入波形相关系数来测量MVD与CVD之间的相关程度。当线路中没有故障时,CVD几乎等于MVD,相关系数接近1。如果线路上发生内部故障,则相关系数会降低。识别内部故障后,采用两端电流将线路的断路故障与短路故障区分开。在PSCAD / EMTDC中建立了三机九节点模型,仿真结果表明,所提出的保护算法能够可靠地识别出不同载荷条件和长度下的断路故障。

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