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Surge Characteristics of a Twisted Pair

机译:双绞线的浪涌特性

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We used the method of moments (MoM), which is a numerical electromagnetic field computation method, to study the surge characteristics of twisted pair single-phase electric power lines. The results show that wires stranded with less than several turns per meter have almost the same surge characteristics as parallel lines, but the surge impedance decreases in tens of % when the number of strands increases. To verify the simulation results, we measured the surge characteristics of a model line of twisted pair experimentally, and there is good accordance between them. It is possible to simulate the surge in twisted pair covered with polymer dielectric insulators by MoM. Moreover, we studied the surge characteristics of twisted pair which is inserted into a metal tube. According to the results, the effect of the strand is smaller than that in free space without the metal pipe. There are two propagation modes in common mode: fast surge and slow surge. Few influences of the number of strands on the surge velocity occur in the fast propagation surge, but the increase of the surge impedance and the slowdown of the propagation speed are caused by twining in the slow propagation mode.
机译:我们使用矩量法(MoM)(一种数字电磁场计算方法)来研究双绞线单相电力线的浪涌特性。结果表明,每米绞合少于几匝的电线具有与平行线几乎相同的浪涌特性,但是当股数增加时,浪涌阻抗会降低百分之几十。为了验证仿真结果,我们通过实验测量了双绞线模型线的浪涌特性,并且它们之间有很好的一致性。 MoM可以模拟双绞线中被聚合物介电绝缘子覆盖的浪涌。此外,我们研究了插入金属管中的双绞线的浪涌特性。根据结果​​,钢绞线的效果要比没有金属管的自由空间小。共模有两种传播模式:快速浪涌和慢速浪涌。在快速传播浪涌中,股数的数量对浪涌速度的影响很小,但是浪涌阻抗的增加和传播速度的降低是由慢传播模式中的孪生引起的。

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