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A Network Calculus Analysis for the Baseband Processing Capacity in Cloud Radio Access Network

机译:云无线接入网基带处理能力的网络演算分析

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Recently, cloud radio access network (C-RAN) has been widely regarded as a promising architecture for the next generation cellular networks. By separating traditional cellular base station to remote radio head (RRH) and baseband unit (BBU), C-RAN exhibits many advantages such as lower operating expenditure, higher throughput and energy efficiency. In order to understand the potential of C-RAN, much effort has been devoted to analyzing the performance of C-RAN. However, we notice that existing work usually assumes some preknown stochastic characteristics on the distribution of network traffic demands. In this paper, we would like to derive the backlog conditions in the BBU pool so as to understand how C-RAN can satisfy the real-time requirement in general cases without relying on any stochastic assumption. Specially, we build an analysis framework based on network calculus to analyze the baseband processing capacity of BBU pool in C-RAN. Then, we derive the effective bandwidth, based on the aggregated flow from RRHs, as the upper bound of the processing capacity of BBU pool. With the derived effective bandwidth, the upper bound of the number of BBUs can be also obtained accordingly. Numerical results validate the analysis result.
机译:最近,云无线电接入网(C-RAN)已被广泛认为是下一代蜂窝网络的有前途的架构。通过将传统的蜂窝基站与远程无线电头(RRH)和基带单元(BBU)分离,C-RAN表现出许多优势,例如更低的运营支出,更高的吞吐量和能效。为了了解C-RAN的潜力,人们已经投入大量精力来分析C-RAN的性能。但是,我们注意到,现有工作通常在网络流量需求的分布上假设一些已知的随机特征。在本文中,我们希望导出BBU池中的积压条件,以了解C-RAN在一般情况下如何能够满足实时要求,而无需依赖任何随机假设。特别地,我们建立了一个基于网络演算的分析框架,以分析C-RAN中BBU池的基带处理能力。然后,基于来自RRH的聚合流,得出有效带宽,作为BBU池处理能力的上限。利用导出的有效带宽,还可以相应地获得BBU数量的上限。数值结果验证了分析结果。

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