全双工蜂窝网络的上行和下行性能界限

Askar Mandali Kundu, Rudrashish Pal, Mayank Kumar, Sreejith T. Veetil
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引用次数: 3

摘要

采用全双工(Full Duplex, FD)技术,无线终端可以在同一频率资源中同时收发数据,但会产生自干扰和同信道干扰。尽管出现了各种信号处理技术来消除自干扰,但蜂窝系统中FD性能的瓶颈是来自其他上行和下行信号的同信道干扰。在这项工作中,我们研究了用户在上行链路中采用分数功率控制的FD蜂窝网络的上行链路和下行链路性能。我们使用Matern Cluster Process对网络进行建模,提供了一个易于处理和真实的模型来表征上行功率控制所需的用户基站距离。基于得到的覆盖概率、速率和它们的鲁棒近似,我们表明FD虽然提高了下行性能,但严重损害了上行性能。此外,我们提供了上行链路和下行链路性能之间的权衡。研究表明,密集部署低功率基站可以提高FD系统的性能。
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Uplink and Downlink Performance Bounds for Full Duplex Cellular Networks
With Full Duplex (FD), wireless terminal is capable of transmitting and receiving data simultaneously in the same frequency resources, however, it introduces self interference and co-channel interference. Even though various signal processing techniques are emerged to cancel the self interference, the bottleneck for FD performance in cellular systems is the co-channel interference from the other uplink and downlink signals. In this work we have studied both the uplink and downlink performances of a FD cellular network, where users employ fractional power control in uplink. We use Matern Cluster Process to model the network, which provides a tractable and realistic model to characterize the user-base station distances which are needed for uplink power control. Based on the obtained coverage probabilities, rates and their robust approximations, we show that while FD improves downlink performance, it severely hurts the uplink performance. Also, we provide a trade-off between uplink and downlink performances. Our study suggests dense deployment of low power base stations can improve the performance of FD system.
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