基于fpga的以太网前传同步相位噪声测试平台

Joary Paulo, Igor Freire, Ilan Sousa, Chenguang Lu, M. Berg, Igor Almeida, A. Klautau
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引用次数: 3

摘要

云无线接入网(C-RAN)是RAN架构的最新趋势,旨在帮助运营商应对新兴的4G和5G移动网络等新型无线服务的挑战。C-RAN使用中央服务器中的基带处理单元,该服务器通过所谓的前传网络连接到小区站点的无线电前端。前传基础设施目前由CPRI(公共无线电接口)和OBSAI(开放基站架构倡议)行业标准提供,这些标准使用专用光链路,部署成本高。另一种选择是使用以太网技术,旨在重用许多商业建筑中可用的网络基础设施。然而,与传统的同步前传相比,以太网存在分组延迟变化(PDV)和同步恢复挑战。这项工作提供了一个完整而灵活的测试平台来评估基于以太网的前传。该系统通过广泛的测量验证,显示了同步过程和网络损伤对再生时钟相位噪声的影响。
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FPGA-based testbed for synchronization on Ethernet fronthaul with phase noise measurements
Cloud radio access network (C-RAN) is a recent trend of RAN architecture positioned to help the operators to address challenges of new wireless services, such as emerging 4G and 5G mobile networks. C-RAN uses baseband processing units in a central server which connects to the radio front-ends at cell sites via the so-called fronthaul network. The fronthaul infrastructure is currently provided by CPRI (Common Public Radio Interface) and OBSAI (Open Basestation Architecture Initiative) industry standards which use dedicated optical links with high deployment costs. An alternative is to use Ethernet technology aiming to reuse of network infrastructure available in many commercial buildings. However, in contrast to the traditional synchronous fronthaul, Ethernet suffers with packet delay variation (PDV) and challenging synchronization recovery. This work presents a complete and flexible testbed to evaluate Ethernet-based fronthaul. The system is validated via extensive measurements that show the effects of synchronization procedures and network impairments on regenerated clock phase noise.
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