Network coding schemes for Device-to-Device communications based relaying for cellular coverage extension

A. Abrardo, Gábor Fodor, Besmir Tola
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引用次数: 20

Abstract

In this paper, we study the performance of device-to-device (D2D) based range extension in terms of sum rate and power efficiency when a relaying user equipment (UE) helps to improve the 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) and can operate either in amplify-and-forward (AF) or decode-and-forward (DF) modes and can make use of either digital or analogue (PHY layer) network coding. In this rather general setting, we propose mode selection, resource allocation and power control schemes and 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 cellular and the AF based relaying schemes, including AF with two-slot or three-slot PHY layer network coding.
用于蜂窝覆盖扩展的基于中继的设备对设备通信的网络编码方案
在本文中,我们研究了当中继用户设备(UE)有助于提高蜂窝边缘UE的覆盖范围时,基于设备到设备(D2D)的范围扩展在求和速率和功率效率方面的性能。在我们的设计中,中继终端有自己的流量来发送和接收蜂窝基站(BS),可以在放大转发(AF)或解码转发(DF)模式下工作,并且可以使用数字或模拟(物理层)网络编码。在这种相当普遍的情况下,我们提出了模式选择、资源分配和功率控制方案,并通过系统仿真研究了它们的性能。我们发现带网络编码的DF方案的性能优于传统的蜂窝中继方案和基于自动对焦的中继方案,包括带两槽或三槽物理层网络编码的自动对焦方案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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