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Cheannel Capacity of Twisted Wire Pairs in Multi-Pair Symmetric Copper Cables

机译:多对对称铜电缆中双绞线的通道容量

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Crosstalk is caused by electromagnetic coupling between neighbouring wire pairs in multi-pair copper cables. In this contribution the channel capacity of a twisted wire pair in an unidirectional driven multi-pair cable is calculated, where only far-end crosstalk is present. Thereby two scenarios are considered: Firstly the far-end crosstalk from neighbouring wire pairs is interpreted as disturbance, which affects the transmission in the considered wire pair. Secondly the far-end crosstalk paths are viewed as additional transmission paths, which together with the wanted signal path convey the signal from the near to the far cable end. In the former case the channel capacity is decreased compared to the transmission with only noise disturbance, whereas in the latter case the channel capacity is increased due to the utilization of additional transmission paths. In particular for short cables the effect of far-end crosstalk is very strong and with rising number of neighbouring wire pairs the far-end crosstalk impact increases
机译:串扰是由多对铜电缆中相邻线对之间的电磁耦合引起的。在此贡献中,计算了单向驱动多对电缆中双绞线的通道容量,其中仅存在远端串扰。因此,考虑了两种情况:首先,来自相邻线对的远端串扰被解释为干扰,这会影响所考虑的线对中的传输。其次,远端串扰路径被视为附加的传输路径,这些路径与有用信号路径一起将信号从近端传输到远端电缆端。在前一种情况下,与仅具有噪声干扰的传输相比,信道容量减小了,而在后一种情况下,由于利用了额外的传输路径,信道容量增加了。特别是对于短电缆,远端串扰的影响非常强烈,并且随着相邻线对数量的增加,远端串扰的影响也会增加

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