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A Review of DSP-Based Enabling Technologies for Cloud Access Networks

机译:云访问网络中基于DSP的支持技术综述

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Optical access networks, metro networks and mobile data networks are facing rapidly evolving demands, not only is it essential to satisfy the unyielding need for increased user bandwidths, but future networks must also support the growing wide variation in traffic dynamics and characteristics, due to various emerging technologies, such as cloud-based services, the Internet-of-Things (IoT) and 5G mobile systems, and due to growing trends, such as the proliferation of mobile devices and the rapidly increasing popularity of video-on-demand services. To be cost-effective and commercially sustainable, future optical networks must offer features, such as, dynamic reconfigurability, highly efficient use of network resources, elastic bandwidth provisioning with fine granularity, network sliceabilty and software defined networking (SDN). To meet these requirements Cloud Access Networks (CANs) are proposed which require a number of flexible, adaptive and reconfigurable networking elements. By exploiting digital signal processing (DSP) we have proposed a digital orthogonal filter-based multiplexing technique to implement CANs with multiplexed, independent optical channels at the wavelength, sub-wavelength, and orthogonal sub-band levels. This paper reviews the overall CAN concept, the operating principles of the various CAN network elements and presents an overview of the research work we have undertaken in order to validate the feasibility of the proposed technologies which includes real-time DSP-based demonstrations.
机译:光接入网,城域网和移动数据网正面临快速发展的需求,不仅必须满足对增加用户带宽的坚定要求,而且由于各种因素,未来的网络还必须支持日益增长的流量动态和特性变化新兴技术,例如基于云的服务,物联网(IoT)和5G移动系统,以及由于不断增长的趋势(例如移动设备的普及和视频点播服务的迅速普及)。为了具有成本效益和商业上的可持续性,未来的光网络必须提供以下功能:动态可重新配置,网络资源的高效使用,具有精细粒度的弹性带宽供应,网络可扩展性和软件定义网络(SDN)。为了满足这些要求,提出了云访问网络(CAN),其需要许多灵活,自适应和可重新配置的网络元素。通过利用数字信号处理(DSP),我们提出了一种基于数字正交滤波器的复用技术,以实现具有波长,子波长和正交子带级别的复用,独立光信道的CAN。本文回顾了整个CAN概念,各种CAN网络元素的工作原理,并概述了我们进行的研究工作,以验证所提出技术的可行性,其中包括基于DSP的实时演示。

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