支持IP多媒体子系统的无线SDN架构测试平台

Ali Issa, N. Hakem, N. Kandil
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引用次数: 2

摘要

第五代移动通信有望提供非常高的可实现数据速率、非常低的延迟、超高的可靠性,同时支持广泛的新应用和用例。为了提高5g无线网络的网络可扩展性、业务灵活性和改善移动性管理,出现了两个新概念,即网络功能虚拟化(NFV)和软件定义无线网络(SDWN)。在这项研究中,我们设计并实现了一个基于开源软件的LTE实现的网络架构,称为OpenAirInterface (OAI)。OAI仿真平台是一种允许大规模网络实验的集成工具。后者可以用于原型创新调度算法,使大多数新架构。SDWN网络技术的出现是为了提供高质量的多性能系统,具有成本效益,包括几个过程,如实时监控、重新配置、控制授权和更快的数据传输。为了测试5G移动网络的一些关键功能,我们提供了一个结合SDWN和NFV技术的拓扑结构,通过在OAI平台上运行Mosaic 5G FlexRAN软件来处理网络切片的实现。此外,还集成了Clearwater IP多媒体子系统IMS (Clearwater IP Multimedia Subsystem),在用户之间提供VoIP (voice over IP)服务,并在网络中增加Wi-Fi接入点AP (Wi-Fi Access point),建立异构无线网络HetNet。我们的结果可以作为开源社区未来优化的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Wireless SDN architecture Testbed to support IP Multimedia Subsystem
The fifth generation of mobile communications, promises to offer very high achievable data rate, very low latency, ultra-high reliability, along with supporting a wide range of new applications and use cases. In order to increase network scalability, service flexibility and to improve mobility management in 5g wireless networks, two new concepts have emerged, namely Network Functions Virtualization (NFV) and Software Defined Wireless Networking (SDWN). In this study, we designed and implemented a network architecture based on an open-source software-based LTE implementation named as OpenAirInterface (OAI). OAI emulation platform is an integrated tool allowing large-scale networking experimentation. The latter can be used for prototyping innovation scheduling algorithms, making the majority of new architecture. SDWN network technology has emerged in order to deliver a high quality multiple performance system with cost benefits that includes several processes such as live monitoring, reconfiguration, control delegation and faster data-transfer. In order to test some key enablers and features of 5G mobile networks, we provide a topology that combines SDWN and NFV technologies to handle the fulfilment of network slices by running Mosaic 5g FlexRAN software on top of the OAI platform. Moreover, Clearwater IP Multimedia Subsystem (IMS) is integrated to provide voice over IP (VoIP) service between subscribers and a Wi-Fi Access point (AP) is added to network in order to establish a heterogeneous wireless network (HetNet). Our results can serve as a reference for future optimization by the open source community.
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