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Theoretical transmission-line study of symmetrical indoor triple-pole cables for single-phase HF signalling

机译:用于单相高频信号传输的对称室内三极电缆的理论传输线研究

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Theoretical study of symmetrical single-phase indoor tricels is performed with respect to high-frequency (HF) transmission-line modeling, aimed at potential communication applications over the low-voltage (LV) in-house grid. The analysis is based on the fundamental transverse-electro-magnetic (TEM) wave propagation concept, commencing from the three-conductor transmission-line model. In the three-wire cable, any transmission circuit consisting of two conductors-out of all three-is by virtue of symmetry reduced to a two-conductor formulation. The distributed parameters of the resulting model are moreover extracted via proper observation of cable's field structure, where complete conformance with the uniform isolated two-conductor line is obtained. Propagation of high frequency signalling transmitted between phase and neutral may thence in practice be treated and formulated independently, as if no ground wire existed. In addition, verification of the TEM mode assumption is demonstrated, and hints on the applicability of the work presented are suggested.
机译:针对高频(HF)传输线建模,针对对称单相室内细线进行了理论研究,旨在针对内部低压(LV)电网上的潜在通信应用。该分析基于基本的横向电磁(TEM)传播概念,该概念从三导体传输线模型开始。在三线电缆中,由于对称性,由三者中的两个导体组成的任何传输电路都简化为两导体形式。此外,通过对电缆场结构的适当观察,可以提取所得模型的分布参数,从而获得与均匀隔离的两芯线的完全一致性。因此,实际上在相线和中线之间传输的高频信号的传播可以独立地对待和制定,就好像没有地线存在一样。此外,演示了对TEM模式假设的验证,并提出了有关所提出工作的适用性的提示。

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