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Proximity-Aware Calculation of Cable Series Impedance for Systems of Solid and Hollow Conductors

机译:实心和空心导体系统的电缆串联阻抗的接近度计算

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摘要

Wideband cable models for the prediction of electromagnetic transients in power systems require an accurate calculation of the cable series impedance as a function of frequency. A surface current approach was recently proposed for systems of round solid conductors, with the inclusion of skin and proximity effects. In this paper, we extend the approach to include tubular conductors, allowing to model realistic cables with tubular sheaths, armors, and pipes. We also include the effect of a lossy ground. A noteworthy feature of the proposed technique is the accurate prediction of proximity effects, which can be of major importance in three-phase, pipe-type, and closely packed single-core cables. The new approach is highly efficient compared to finite elements. In the case of a cross-bonded cable system featuring three-phase conductors and three screens, the proposed technique computes the required 120 frequency samples in only six seconds of CPU time.
机译:用于预测电力系统中电磁瞬变的宽带电缆模型要求对作为频率函数的电缆串联阻抗进行精确计算。最近提出了一种用于圆形实心导体系统的表面电流方法,其中包括趋肤效应和邻近效应。在本文中,我们将方法扩展到包括管状导体,从而可以使用管状护套,铠装和管道对真实的电缆进行建模。我们还包括有损地面的影响。所提出的技术的一个值得注意的特征是对邻近效应的准确预测,这在三相,管型和紧密堆积的单芯电缆中可能非常重要。与有限元相比,新方法是高效的。对于具有三相导体和三个屏蔽层的交叉连接电缆系统,该技术仅在六秒钟的CPU时间内即可计算出所需的120个频率采样。

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