Energy Efficient Power Control and Relaying for C-RAN Uplink With Wireless Fronthaul

Daesung Yu, Junbeom Kim, Seung‐Eun Hong, Seok-Hwan Park
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Abstract

This work proposes an energy-efficient design of transmit power control and relaying strategies for the uplink of a cloud radio access network (C-RAN) with wireless fronthaul link. In the system, a set of single-antenna user equipments (UEs) send independent messages to a multi-antenna baseband processing unit (BBU) through a set of parallel multi-antenna remote radio heads (RRHs). The radio access link from the UEs to the RRHs is assumed to be orthogonal to the fronthaul link from the RRHs to the BBU. Since the overall performance of the system may be limited by the battery constraints of the UEs, this work tackles the problem of maximizing the worst energy efficiency of the UEs subject to the transmit power constraints at the UEs and the RRHs. Numerical results are provided to validate the advantages of the proposed energy-efficient scheme.
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具有无线前传的C-RAN上行链路节能功率控制与中继
本文提出了一种具有无线前传链路的云无线接入网(C-RAN)上行链路的节能发射功率控制和中继策略设计。在该系统中,一组单天线用户设备(ue)通过一组并行的多天线远程无线电头(RRHs)向多天线基带处理单元(BBU)发送独立的消息。假设ue到RRHs的无线接入链路与RRHs到BBU的前传链路正交。由于系统的整体性能可能受到终端电池约束的限制,因此本工作解决了在终端和RRHs的发射功率约束下最大化终端最差能效的问题。数值结果验证了所提节能方案的优越性。
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