全双工C-RAN:功率控制的影响

IF 0.9 Q4 TELECOMMUNICATIONS
Askar Mandali Kundu, Thazhathe Veetil Sreejith
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引用次数: 0

摘要

本文研究了云无线电接入网络(C-RAN)在全双工(FD)蜂窝网络中不同功率控制场景下的性能。结果表明,FDC-RAN性能随着上行链路(UL)功率控制而显著降低。我们提出了一种下行链路(DL)中的功率控制方案,该方案提高了UL用户速率,但以DL速率为代价。在UL和DL功率控制的情况下,平均速率在阈值数量的基站(BS)协调之后饱和,并且对协调额外的BS几乎没有影响。此外,130的最先进的自干扰抑制(SI) 与完美的SI消除相比,dB提供了几乎相等的性能。因此,同信道干扰管理成为FD系统设计的瓶颈。我们使用Matern集群过程(MCP)对网络进行建模。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full duplex C-RAN: Effects of power control

This paper investigates the performance of cloud radio access networks (C-RAN) in different power control scenarios in full-duplex (FD) cellular networks. Results reveal that FD C-RAN performance drastically reduces with uplink (UL) power control. We proposed a power control scheme in downlink (DL), which uplifts the UL user rate, but at the cost of DL rate. With UL and DL power control, the average rate saturates after a threshold number of base stations (BS) coordination and has little impact on coordinating additional BSs. Besides, the state-of-the-art self-interference suppression (SI) of 130 dB provides almost equal performance compared to the perfect SI cancelation. Hence co-channel interference management becomes the bottleneck for FD system design. We used the Matern cluster process (MCP) to model the network.

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