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Characteristics of Transfer Function of Power Lines having Tapped Branches in the Propagation Path

机译:传播路径中具有螺纹分支的电力线传递函数的特征

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Power lines can be used for communication purpose. However, the channel is highly frequency selective arising from discontinuities in the network. In this work, the effect of tapped branches in different topologies (STAR and BUS) is studied. The frequency selectiveness is measured in terms of the Coherence Bandwidth. It is found that the Coherence Bandwidth is more for STAR than a BUS one. In STAR topology, the same at first decreases and then increases for increasing number of taps at the nodes. For large number of components, the transfer function of STAR branch is governed by the characteristics of the connecting cable while for in BUS topology, the same becomes very complex. The paper gives an idea of the dependency of the efficiency of the communication system on branches with different topologies encountered.
机译:电源线可用于通信目的。然而,信道是从网络中的不连续性产生的高频率选择性。在这项工作中,研究了分支分支在不同拓扑(明星和总线)的效果。频率选择性在相干带宽方面测量。结果发现,恒星的相干带宽比公共汽车更多。在星形拓扑中,在第一次下降时相同,然后增加节点的抽头数量的增加。对于大量组件,星分支的传递函数由连接电缆的特性控制,而在总线拓扑中,同样变得非常复杂。本文介绍了通信系统效率对具有不同拓扑遇到的分支的效率的依赖性。

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