了解云无线接入网络的能源消耗:一项实验研究

Ujjwal Pawar, A. K. Singh, Keval Malde, T. B. Reddy, A. Franklin
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引用次数: 4

摘要

云无线接入网(C-RAN)作为一种极具吸引力的解决方案正在崛起,为运营商以经济高效的方式应对不断增长的用户需求。C-RAN的架构由(i)位于远程站点的分布式单元(DU)和RF处理单元组成,(ii)中央单元(CU)由高速可编程处理器组成,执行诸如移动性控制、无线接入网络共享、定位、会话管理等任务,(iii)低延迟、高带宽前传链路,将多个DU连接到云平台上实现的CU池。在传统的C-RAN中,bbu和rrh必须执行的功能是固定的。在下一代C-RAN中,3GPP引入了功能拆分的概念,以实现在cu和du之间转移网络堆栈功能的想法,而不是固定的功能集。本文利用基于OpenAirInterface (OAI)软件平台的实时C-RAN测试平台,通过改变CPU时钟频率和信道带宽,对不同功能分区配置的能耗进行了分析。可以观察到,对于一些较低的CPU时钟频率,在不影响系统吞吐量和整体用户体验的情况下降低了能耗。有了这些见解,运营商可以提高部署的CRAN系统的能源效率。
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Understanding Energy Consumption of Cloud Radio Access Networks: an Experimental Study
Cloud Radio Access Network (C-RAN) is rising as an attractive solution for the operators to cope with the ever-increasing user demand in a cost-efficient way. C-RAN’s architecture consists of (i) Distributed Units (DU) located at the remote sites along with RF processing units, (ii) the Central Unit (CU) consisting of high speed programmable processors performing tasks such as mobility control, radio access network sharing, positioning, session management over a (iii) low latency, high bandwidth fronthaul link, which connects multiple DUs to the CU pool realized on a cloud platform. In traditional C-RAN, the functionalities that the BBUs and RRHs have to perform are fixed. Instead of having such a fixed set of functionalities, the concept of functional splits was introduced by 3GPP to bring forth the idea of shifting network stack functions between CUs and DUs in next generation C-RAN. In this paper, a real-time C-RAN testbed running on OpenAirInterface (OAI) software platform is used to profile the energy consumed by different functional splits configured by varying the CPU clock frequency and channel bandwidth. It is observed that for some lower CPU clock frequencies, the energy consumption is reduced without affecting the system throughput and overall user experience. With these insights, operators can improve the energy efficiency of CRAN systems deployed.
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