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Network Coding Schemes for Device-to-Device Communications Based Relaying for Cellular Coverage Extension

机译:基于设备间通信的中继覆盖的网络编码方案

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摘要

Although network assisted device-to-device (D2D) communications is known to improve the spectraland energy efficiency of proximal communications, its performance is less understood when employedto extend the coverage of cellular networks.In this paper, we study the performance of D2D basedrange extension in terms of sum rate and power efficiency when a relaying user equipment (UE) helps to improvethe coverage for cell-edge UEs.In our design, the relaying UE has own traffic to transmit and receive to/from the cellular base station (BS) andcan operate either in amplify-and-forward (AF) or decode-and-forward (DF) modes and can make use of either digital oranalogue (PHY layer) network coding.In this rather general setting, we propose mode selection, resource allocation and power control schemesand study their performance by means of system simulations.We find that the performance of the DF scheme with network coding is superior both to the traditional cellularand the AF based relaying schemes, including AF with two-slot or three-slot PHY layer network coding.
机译:尽管已知网络辅助设备到设备(D2D)通信可以改善近端通信的频谱和能量效率,但是当其用于扩展蜂窝网络的覆盖范围时,对它的性能了解较少。本文中,我们研究了基于D2D的范围扩展的性能在中继用户设备(UE)帮助改善小区边缘UE的覆盖范围时,在总速率和功率效率方面。在我们的设计中,中继UE拥有自己的业务来往/从蜂窝基站(BS)发送和接收并且可以在放大转发(AF)或解码转发(DF)模式下运行,并且可以利用数字模拟(PHY层)网络编码。在这种相当普通的设置下,我们建议模式选择,资源分配并发现通过网络编码的DF方案的性能优于传统的蜂窝和基于AF的中继方案mes,包括具有两插槽或三插槽PHY层网络编码的AF。

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