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Data-Transmission Characteristics of Power Cables with Star-Quad Cross-Section

机译:具有星形四边形截面的电力电缆的数据传输特性

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In this paper, the transmission of high-frequency signals for power line communications (PLC) along four-conductor power cables with star-quad cross-section is analyzed. In the derivation, the power cable is treated as a uniform and lossless multiconductor transmission line (MTL), and modal analysis is applied. The cable propagation modes are derived by literal solution of the MTL wave equations and related to the specific structure of the per-unit-length matrix parameters of the cable. The influence of coupling/decoupling schemes on the involved mode propagation paths is analyzed. For different values and configuration of the power cable loads, the signal attenuation (SA) of the PLC channel is evaluated in closed form. It is shown that intra-phase (differential) coupling should be used in order to excite a single propagation mode via balanced connections to a specific pair of phase conductors; under such conditions a two-conductor transmission line (TL) analogy holds. Different three-phase terminal loads and the possible presence of a branch point are considered in order to assess their effect in terms of degradation of the channel SA.
机译:在本文中,分析了用于电力线通信(PLC)的高频信号沿具有四角星形横截面的四芯电力电缆的传输。在推导中,将电力电缆视为均匀且无损的多导体传输线(MTL),并进行了模态分析。电缆的传播模式是通过MTL波动方程的文字解导出的,并且与电缆的每单位长度矩阵参数的特定结构有关。分析了耦合/解耦方案对所涉及的模式传播路径的影响。对于电源电缆负载的不同值和配置,以封闭形式评估PLC通道的信号衰减(SA)。结果表明,应使用相内(差分)耦合,以便通过与特定的一对相导体的平衡连接来激发单个传播模式。在这样的条件下,两导体传输线(TL)类似。考虑了不同的三相终端负载和可能存在的分支点,以便评估它们在通道SA降级方面的影响。

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