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Joint Design of Fronthaul and Access Links for C-RAN With Wireless Fronthauling

机译:具有无线前传功能的C-RAN前传和访问链路的联合设计

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This letter studies a joint design of fronthaul and radio access links for a cloud radio access network (C-RAN) with wireless fronthauling, where a baseband unit (BBU) controls a number of remote radio heads (RRHs) via wireless fronthaul links to communicate with user equipments. We first review a basic approach based on a single cell concept, whereby the RRHs operate as decode-and-forward (DF) relays. Then, a cooperative transmission from the RRHs based on decompress-and-forward (DCF) relaying is proposed, which is a standard concept in C-RAN. For both strategies, a problem of jointly optimizing the BBU and RRH operations is tackled with the goal of maximizing the weighted sum-rate subject to the BBU and per-RRH power constraints. For each formulated problem, an iterative algorithm is derived that achieves a sequence of monotonically nondecreasing objective values at each iteration. It is confirmed via numerical results that the DCF-based cooperative scheme significantly outperforms the DF-based single-cell approach.
机译:这封信研究了带有无线前传的云无线电接入网(C-RAN)的前传和无线电接入链路的联合设计,其中基带单元(BBU)通过无线前传链路控制多个远程无线电头(RRH)进行通信与用户设备。我们首先回顾基于单小区概念的基本方法,其中RRH作为解码转发(DF)中继进行操作。然后,提出了基于解压缩转发(DCF)中继的RRH的协作传输,这是C-RAN中的标准概念。对于这两种策略,都解决了联合优化BBU和RRH操作的问题,其目标是最大化受BBU和每个RRH功率约束的加权求和速率。对于每个提出的问题,得出一种迭代算法,该算法在每次迭代时实现一系列单调非递减的目标值。通过数值结果证实,基于DCF的协作方案明显优于基于DF的单小区方法。

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