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Can Uplink Transmissions Survive in Full-duplex Cellular Environments?

机译:上行链路传输可以在全双工蜂窝环境中存活吗?

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In-band full-duplex (FD) communication is considered a potential candidate to be adopted by the fifth generation (5G) cellular networks. FD communication renders the entire spectrum simultaneously accessible by uplink and downlink, and hence, is optimistically promoted to double the transmission rate. While this is true for a single communication link, cross-mode interference (i.e., interference between uplink and downlink) may diminish the full-duplexing gain. This paper studies FD operation in large-scale cellular networks with real base stations (BSs) locations and 3GPP propagation environment. The results show that the uplink is the bottleneck for FD operation due to the overwhelming cross-mode interference from BSs. Operating uplink and downlink on a common set of channels in an FD fashion improves the downlink rate but significantly degrades (over 1000-fold) the uplink rate. Therefore, we propose the alpha-duplex scheme to balance the tradeoff between the uplink and downlink rates via adjustable partial overlap between uplink and downlink channels. The alpha-duplex scheme can provide a simultaneous 30% improvement in each of the uplink and downlink rates. To this end, we discuss the backward compatibility of the alpha-duplex scheme with half-duplex user-terminals. Finally, we point out future research directions for FD enabled cellular networks.
机译:带内的全双工(FD)通信被认为是第五代(5G)蜂窝网络采用的潜在候选者。 FD通信呈现通过上行链路和下行链路可同时访问的整个频谱,因此,在乐观地推广以增加传输速率。虽然对于单个通信链路,但是对于单个通信链路来说,跨模式干扰(即,上行链路和下行链路之间的干扰)可以减少全双工增益。本文研究了具有实际基站(BSS)位置和3GPP传播环境的大型蜂窝网络中的FD操作。结果表明,由于来自BSS的压倒性的跨模式干扰,上行链路是FD操作的瓶颈。在FD时尚的通用通道集上的操作上行链路和下行链路提高了下行链路速率,但显着降低(超过1000倍)上行链路速率。因此,我们提出了通过上行链路和下行链路信道之间的可调部分重叠来平衡上行链路和下行率之间的缩放性转换。 Alpha-Duplex方案可以在上行链路和下行链路速率中提供同时30%的改进。为此,我们讨论了Alpha-Duplex方案与半双工用户终端的向后兼容性。最后,我们指出了FD支持的蜂窝网络的未来研究方向。

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