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Full-Duplex SIMO Relaying for Machine-Type Communications in Cellular Networks

机译:用于蜂窝网络中机器类型通信的全双工SIMO中继

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To address massive access in machine-type communication (MTC), we consider in-band full- duplex (IBFD) relays to aggregate MTC packets. IBFD allows devices to receive and transmit concurrently on the same frequency band, potentially doubling the spectral efficiency. On the downside, the use of IBFD raises the interference due to an increased density of simultaneously transmitting nodes. This paper deals with a key trade-off between the increased spectral efficiency and interference in utilizing IBFD uplink relays in a densely deployed MTC network. Using stochastic geometry, we develop a framework to evaluate the end-to-end outage probability and uplink data aggregation rate. The model consists of MTC devices and IBFD relay nodes that forward MTC packets to base stations (BSs) over single-input-multiple-output channels. The BSs employ linear zero-forcing filters to cancel the interference from their associated relay nodes which may transmit simultaneously on the same frequency band. We show the somewhat surprising result that IBFD relaying does not lead to performance gains over half-duplex relays, when devices and relays are independently and homogeneously distributed in space.
机译:为了解决机器类型通信(MTC)中的大规模访问问题,我们考虑使用带内全双工(IBFD)中继来聚合MTC数据包。 IBFD允许设备在同一频带上同时接收和发送信号,从而可能使频谱效率加倍。不利的一面是,由于同时发送节点的密度增加,IBFD的使用会增加干扰。本文讨论了在密集部署的MTC网络中利用IBFD上行链路中继时频谱效率提高与干扰之间的关键权衡。使用随机几何,我们开发了一个框架来评估端到端中断概率和上行链路数据聚集率。该模型由MTC设备和IBFD中继节点组成,这些节点通过单输入多输出通道将MTC数据包转发到基站(BS)。 BS采用线性迫零滤波器来消除来自其相关联的中继节点的干扰,这些干扰可能同时在同一频带上发射。我们显示出令人惊讶的结果,即当设备和继电器独立且均匀地分布在空间中时,IBFD中继不会比半双工继电器带来性能提升。

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