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Basic Principles Concerning the Experimental Evaluation of the Frequency-Dependent Parameters of Shielded and Unshielded Three-Phase Symmetric Cables

机译:关于屏蔽和非屏蔽三相对称电缆频率相关参数的实验评估的基本原理

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摘要

The high-frequency domain characterization of overhead three-phase cables is a critical issue as far as power line carrier communications is concerned. In many instances a detailed knowledge of the electric and magnetic parameters of the cable is not available. Even if manufacturer cable-data are available, strong proximity effects among cable conductors do inhibit the utilization of closed-form expressions for the determination of the cable constitutive parameters, namely, the entries of the per-unit-length $R$, $L$, $G$ , and $C$ matrices. However, the determination of such parameters can always be made experimentally. In this paper, new measurement principles based on the cable excitation by independent propagation modes are presented and discussed. In the case of symmetric cables, the eigenvectors associated to the propagation modes are frequency independent, however, the propagation constants and surge impedances are not. The entries of the frequency-dependent $R$, $L$, $G$ , and $C$ matrices are retrieved from open and short-circuit cable measurements involving information on the modal propagation constants and modal surge impedances. For exemplification purposes, experimental results concerning a shielded three-phase cable for low voltage applications are provided. The results in this paper do not apply to buried cables where ground return phenomena would need to be accounted
机译:就电力线载波通信而言,架空三相电缆的高频域表征是一个关键问题。在许多情况下,无法获得有关电缆的电磁参数的详细知识。即使可以获得制造商的电缆数据,电缆导体之间的强烈邻近效应也确实会抑制使用闭合形式的表达式来确定电缆的本构参数,即每单位长度$ R $,$ L的条目$,$ G $和$ C $矩阵。但是,此类参数的确定始终可以通过实验进行。本文提出并讨论了基于独立传播模式的电缆激励的新测量原理。在对称电缆的情况下,与传播模式相关的特征向量与频率无关,但是,传播常数和电涌阻抗不是。频率相关的$ R $,$ L $,$ G $和$ C $矩阵的条目是从涉及模态传播常数和模态浪涌阻抗信息的开路和短路电缆测量中检索的。出于示例目的,提供了有关用于低压应用的屏蔽三相电缆的实验结果。本文的结果不适用于需要考虑地面回波现象的埋入式电缆

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