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High-Throughput and Low-Latency 60GHz small-cell network architectures over Radio-over-Fiber technologies

机译:光纤无线技术上的高吞吐量和低延迟60GHz小蜂窝网络架构

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Future broadband access networks in the 5G framework will need to be bilateral, exploiting both optical and wireless technologies. This paper deals with new approaches and synergies on radio-over-fiber (RoF) technologies and how those can be leveraged to seamlessly converge wireless technology for agility and mobility with passive optical networks (PON)-based backhauling. The proposed convergence paradigm is based upon a holistic network architecture mixing mm-wave wireless access with photonic integration, dynamic capacity allocation and network coding schemes to enable high bandwidth and low-latency fixed and 60GHz wireless personal area communications for gigabit rate per user, proposing and deploying on top a Medium-Transparent MAC (MT-MAC) protocol as a low-latency bandwidth allocation mechanism. We have evaluated alternative network topologies between the central office (CO) and the access point module (APM) for data rates up to 2.5 Gb/s and SC frequencies up to 60 GHz. Optical network coding is demonstrated for SCM-based signaling to enhance bandwidth utilization and facilitate optical-wireless convergence in 5G applications, reporting medium-transparent network coding directly at the physical layer between end-users communicating over a RoF infrastructure. Towards equipping the physical layer with the appropriate agility to support MT-MAC protocols, a monolithic InP-based Remote Antenna Unit optoelectronic PIC interface is shown that ensures control over the optical resource allocation assisting at the same time broadband wireless service. Finally, the MT-MAC protocol is analysed and simulation and analytical theoretical results are presented that are found to be in good agreement confirming latency values lower than 1msec for small- to mid-load conditions.
机译:5G框架中未来的宽带接入网络将需要是双边的,同时利用光学和无线技术。本文讨论了基于光纤的无线(RoF)技术的新方法和协同作用,以及如何利用基于无源光网络(PON)的回传技术来利用这些方法和协同作用无缝地融合无线技术,从而实现敏捷性和移动性。拟议的收敛范例基于将毫米波无线接入与光子集成,动态容量分配和网络编码方案相结合的整体网络架构,以实现高带宽和低延迟的固定和60GHz无线个人区域通信,以实现每位用户的千兆速率。并在中级透明MAC(MT-MAC)协议上部署低延迟带宽分配机制。我们已经评估了中心局(CO)和接入点模块(APM)之间的替代网络拓扑,其数据速率高达2.5 Gb / s,SC频率高达60 GHz。光网络编码已针对基于SCM的信令进行了演示,以提高带宽利用率并促进5G应用中的光无线融合,并直接在通过RoF基础架构进行通信的最终用户之间的物理层上报告了介质透明的网络编码。为了为物理层配备适当的敏捷性以支持MT-MAC协议,显示了一个基于InP的单片式远程天线单元光电PIC接口,可确保控制光资源分配,同时帮助宽带无线服务。最后,对MT-MAC协议进行了分析,并给出了仿真和分析理论结果,发现它们在确认中小负载情况下的等待时间值低于1毫秒方面具有很好的一致性。

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