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A Downstream Power Back-Off Procedure for Mixed FTTC and FTTDp Scenarios

机译:混合FTTC和FTTDp方案的下游功率回退过程

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摘要

VDSL2 achieves high bit rates thanks to far-end crosstalk suppression and proper selection of the access network infrastructure. In this paper, we consider one architectural solution, which adopts the standard VDSL2 profile in a Fiber-To-The-Distribution point (FTTDp). During the transition process, FTTDp has to coexist with Fiber-To-The-Cabinet (FTTC) in a mixed VDSL2 scenario. Downstream Power Back-Off (DPBO) for FTTDp is effective to mitigate interference among FTTC and FTTDp. When FTTC terminals are vectored, DPBO leads to reduction of the maximum bit rate for FTTDp as compared to FTTC. In this paper, we propose a modification of the ITU DPBO procedure for FTTC and FTTDp to achieve the same bit rate. The maximum power assigned to FTTDp users is now proportional to the average received power of the vectored FTTC users at the Distribution Point. We obtain the proportionality coefficient, which depends on the number of active FTTC and FTTDp terminals and it is independent of the sub-carrier frequency.
机译:由于远端串扰抑制和对接入网络基础架构的适当选择,VDSL2实现了高比特率。在本文中,我们考虑一种架构解决方案,该解决方案在光纤到分布点(FTTDp)中采用标准VDSL2配置文件。在过渡过程中,FTTDp必须在混合VDSL2方案中与光纤到机柜(FTTC)共存。 FTTDp的下行功率退避(DPBO)可有效减轻FTTC和FTTDp之间的干扰。对FTTC终端进行矢量处理时,与FTTC相比,DPBO导致FTTDp的最大比特率降低。在本文中,我们提出了针对FTTC和FTTDp的ITU DPBO程序的修改,以实现相同的比特率。现在,分配给FTTDp用户的最大功率与矢量FTTC用户在分发点的平均接收功率成比例。我们获得了比例系数,该比例系数取决于有效FTTC和FTTDp终端的数量,并且与子载波频率无关。

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