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The influence of nonhomogeneous earth on the inductive interference caused to telecommunication cables by nearby AC electric traction lines

机译:不均匀地球对附近交流电力牵引线对电信电缆造成的感应干扰的影响

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This work investigates the inductive interference caused by AC electric traction lines to nearby buried telecommunication cables, in the presence of a nonhomogeneous earth. The two dimensional, quasi stationary electromagnetic field diffusion equation has been numerically solved by using the finite element method (FEM), in a system involving an AC electric traction line of the Greek Railways Organization and a buried cable of the Greek Telecommunications Organization. Using FEM results, magnetic vector potential in the cross-section of the examined system, as well as the longitudinal electromotive force induced in the circuit formed by the telecommunication cable and earth, are calculated. A rigorous parametric analysis concerning various nonhomogeneous earth models has shown a significant influence of the depth and resistivity of the first earth layer, as well as of the resistivities of the different earth layers, on the electromagnetic field and on the inductive interference caused to the buried telecommunication cable.
机译:这项工作研究了在存在非均质接地的情况下,交流电力牵引线对附近的埋藏通信电缆造成的感应干扰。在涉及希腊铁路组织的交流电力牵引线和希腊电信组织的地下电缆的系统中,已经通过使用有限元方法(FEM)数值求解了二维准静态电磁场扩散方程。使用FEM结果,可以计算出所检查系统的横截面中的磁矢量电势,以及由电信电缆和大地形成的电路中感应的纵向电动势。对各种非均匀地球模型的严格参数分析表明,第一接地层的深度和电阻率以及不同接地层的电阻率对电磁场和对埋入物的感应干扰具有重大影响电信电缆。

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