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Robust Baseband Compression Against Congestion in Packet-Based Fronthaul Networks Using Multiple Description Coding

机译:使用多描述编码的基于分组的前传网络中的针对拥塞的鲁棒基带压缩

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In modern implementations of Cloud Radio Access Network (C-RAN), the fronthaul transport network will often be packet-based and it will have a multi-hop architecture built with general-purpose switches using network function virtualization (NFV) and software-defined networking (SDN). This paper studies the joint design of uplink radio and fronthaul transmission strategies for a C-RAN with a packet-based fronthaul network. To make an efficient use of multiple routes that carry fronthaul packets from remote radio heads (RRHs) to cloud, as an alternative to more conventional packet-based multi-route reception or coding, a multiple description coding (MDC) strategy is introduced that operates directly at the level of baseband signals. MDC ensures an improved quality of the signal received at the cloud in conditions of low network congestion, i.e., when more fronthaul packets are received within a tolerated deadline. The advantages of the proposed MDC approach as compared to the traditional path diversity scheme are validated via extensive numerical results.
机译:在云无线电接入网络(C-RAN)的现代实现中,前传传输网络通常将基于数据包,并且将具有使用通用交换机构建的多跳架构,该通用交换机使用网络功能虚拟化(NFV)和软件定义网络(SDN)。本文研究了基于分组的前传网络的C-RAN的上行链路无线电和前传传输策略的联合设计。为了有效利用从远程无线电头(RRH)到云传送承载前传数据包的多个路由,作为更常规的基于数据包的多路由接收或编码的替代方法,引入了多描述编码(MDC)策略直接在基带信号的水平上。 MDC可确保在网络拥塞较低的情况下(即,在允许的期限内接收到更多的前传数据包)在云中接收到的信号的质量得到改善。通过广泛的数值结果验证了与传统路径分集方案相比,所提出的MDC方法的优势。

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