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Adaptive Distance Protection Scheme for High Resistance Phase to Phase Faults on Double-Circuit Transmission Line

机译:双回路输电线路高阻相间故障的自适应距离保护方案

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In the context of smart grid, is desired a safe and correct functionality of the relay protection, by rapid fault isolation and ensure continuous supply of electricity to consumers. Implementing smarter protection as adaptive protection is one way of tackling some of the performance issues. The variable nature of the fault resistance in certain situations influence the distance protection, even if the distance protection, through polygon feature, allows sufficient arc reserve. To ensure proper functionality of the distance protection of double circuit lines, in the case of two phase faults with high resistance fault, the paper proposes an impedance correction algorithm, in order to compensate the influence of the reactance effect. Considering the measured currents and voltages from the local distance protection, the deviation vector is calculated and used for changing the position of the fault impedance in the R-X plane. As a result, the fast tripping command is initiated for faults with high resistance in the zone 1 or blocked for faults in the zone 2.
机译:在智能电网的情况下,期望通过快速的故障隔离和确保向用户连续供电的继电保护的安全和正确的功能。将更智能的保护作为自适应保护实现是解决某些性能问题的一种方法。即使在通过多边形特征的距离保护允许足够的电弧储备的情况下,故障电阻在某些情况下的可变性质也会影响距离保护。为了保证双回线距离保护的正常运行,在具有高阻故障的两相故障的情况下,提出了一种阻抗校正算法,以补偿电抗效应的影响。考虑到从本地距离保护器测得的电流和电压,计算偏差矢量并将其用于更改故障阻抗在R-X平面中的位置。结果,对于区域1中高电阻的故障启动快速跳闸命令,或者对于区域2中的故障阻止快速跳闸命令。

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