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Inclusion of Wire Twisting Effects in Cable Impedance Calculations

机译:电缆阻抗计算中包括绞线效应

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摘要

Cable-series impedance modeling is widely applied in electromagnetic transients simulations and power-loss calculations. The calculations are usually performed in a 2-D frame using the finite-element method or alternative approaches, such as MoM-SO, thereby losing the 3-D effects imposed by twisting wire screens and armors. One of the implications of using 2-D modeling for three-core and closely packed single-core cables is that currents will always circulate among the individual wires of each wire screen or armor. However, in the case of twisted screens/armors where the wires are insulated from each other, such current circulation will in reality not exist. As a result, the calculated impedances become incorrect as well as the induced currents and losses on individual conductors. A procedure is introduced for preventing such false current circulations in a 2-D calculation frame by simple manipulation of the system impedance matrix. The approach is demonstrated for the modeling of single-core and three-core cables, with and without external armor. It is shown that the representation of the wire screen/armor armor with respect to current circulations can substantially influence the calculated result, both for the 50/60 Hz impedance and the cable transient behavior. The use of tubular screen representations is also investigated.
机译:电缆系列阻抗建模已广泛应用于电磁瞬态仿真和功率损耗计算中。通常使用有限元方法或其他方法(例如MoM-SO)在2-D框架中执行计算,从而丢失了扭曲丝网和铠装所产生的3-D效果。对三芯和紧密封装的单芯电缆使用2-D建模的含义之一是,电流将始终在每个线网或铠装的单线之间流通。但是,在屏蔽线/铠装线相互绝缘的情况下,这种电流循环实际上将不存在。结果,计算出的阻抗以及各个导体上的感应电流和损耗变得不正确。引入了一种通过简单控制系统阻抗矩阵来防止2-D计算框架中此类错误电流循环的过程。演示了该方法用于建模有或没有外部铠装的单芯和三芯电缆。结果表明,对于50/60 Hz阻抗和电缆瞬态行为,金属丝网屏蔽/铠装相对于电流循环的表示都可以显着影响计算结果。还研究了管状屏幕表示的使用。

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