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Energy-Efficient Virtual Base Station Formation in Optical-Access-Enabled Cloud-RAN

机译:启用光接入的Cloud-RAN中的高能效虚拟基站组建

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In recent years, the increasing traffic demand in radio access networks (RANs) has led to considerable growth in the number of base stations (BSs), posing a serious scalability issue, including the energy consumption of BSs. Optical-access-enabled Cloud-RAN (CRAN) has been recently proposed as a next-generation access network. In CRAN, the digital unit (DU) of a conventional cell site is separated from the radio unit (RU) and moved to the “cloud” (DU cloud) for centralized signal processing and management. Each DU/RU pair exchanges bandwidth-intensive digitized baseband signals through an optical access network (fronthaul). Time-wavelength division multiplexing (TWDM) passive optical network (PON) is a promising fronthaul solution due to its low energy consumption and high capacity. In this paper, we propose and leverage the concept of a virtual base station (VBS), which is dynamically formed for each cell by assigning virtualized network resources, i.e., a virtualized fronthaul link connecting the DU and RU, and virtualized functional entities performing baseband processing in DU cloud. We formulate and solve the VBS formation (VF) optimization problem using an integer linear program (ILP). We propose novel energy-saving schemes exploiting VF for both the network planning stage and traffic engineering stage. Extensive simulations show that CRAN with our proposed VF schemes achieves significant energy savings compared to traditional RAN and CRAN without VF.
机译:近年来,无线电接入网络(RAN)中不断增长的流量需求已导致基站(BS)数量大幅增长,带来了严重的可扩展性问题,包括BS的能耗。最近提出了启用光接入的Cloud-RAN(CRAN)作为下一代接入网络。在CRAN中,常规小区站点的数字单元(DU)与无线电单元(RU)分离并移至``云''(DU云)以进行集中信号处理和管理。每个DU / RU对都通过光接入网络(前传)交换带宽密集的数字化基带信号。时分波分复用(TWDM)无源光网络(PON)由于其低能耗和高容量而成为有前途的前传解决方案。在本文中,我们提出并利用了虚拟基站(VBS)的概念,该虚拟基站通过分配虚拟化网络资源(即连接DU和RU的虚拟化前传链路以及执行基带的虚拟化功能实体)为每个小区动态形成在DU云中进行处理。我们使用整数线性程序(ILP)制定和解决VBS形成(VF)优化问题。我们在网络规划阶段和流量工程阶段都提出了利用VF的新型节能方案。大量的仿真表明,与传统的RAN和不带VF的CRAN相比,采用我们提出的VF方案的CRAN节省了大量能源。

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