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Packet-optical integration nodes for next generation transport networks

机译:下一代传输网络的分组光学集成节点

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摘要

The development of a new generation of photonic integrated circuits and the constant progress in integrated electronics (following Moore''s law) made the realization of a new type of optical transport node possible, by basing it on the concept of a digital photonic switching layer working in coordination with the packet switching layer under the control of a multi-layer control plane. In this paper such a new type of optical transport node is presented, analyzed and implemented in order to better investigate its potential advantages and weaknesses if compared with the conventional all-optical transport nodes and their level of applicability. The new node concept is based on a “vertical” view of packet-opto networks able to face the challenge of growing network capacity while cutting costs and to allow an efficient combination of digital optical networks and packet-opto integration''s benefits. Thanks to the use of optical-electrical-optical conversion technology, the wavelength division multiplexed (WDM) layer is provided with the traffic management flexibility and the engineering simplicity of digital transport systems (significant operational expenditures reduction) and with the network cost savings of large-scale photonic integration (capital expenditures reduction). It combines packet and WDM switching technologies where appropriate, with the ability to offload pass-through traffic from the packet layer to the lowest possible layer, so as to reduce costs and power consumption by eliminating unnecessary packet processing (total cost of ownership reduction). The main building blocks are a new digital optical transport based on an integrated packet-opto node that is scalable, flexible and low cost, and multi-layer control and management based on standard generalized multiprotocol label switching and innovative path computation element (PCE) solutions. Thanks to the flexibility of the digital reconfigurable optical add/drop multiplexer, the PCE is a- le to handle both layers in a very efficient way by selecting the right granularity for traffic grooming and routing. The feasibility has been assessed by a network prototype composed of four nodes produced by Ericsson Research Lab in Pisa and by a simulation analysis.
机译:新一代光子集成电路的发展以及集成电子技术的不断发展(遵循摩尔定律),通过基于数字光子交换层的概念,实现了新型的光传输节点成为可能在多层控制平面的控制下与分组交换层协同工作。本文提出,分析和实现了这种新型的光传输节点,以便与常规的全光传输节点相比,更好地研究其潜在的优缺点和适用水平。新的节点概念基于分组光网络的“垂直”视图,该网络能够应对不断增长的网络容量同时降低成本的挑战,并允许数字光网络的有效组合和分组光集成的好处。由于使用了光电转换技术,波分复用(WDM)层具有流量管理的灵活性和数字传输系统的工程简化性(减少了可观的运营支出),并且节省了大量的网络成本规模的光子集成(减少资本支出)。它适当地结合了分组和WDM交换技术,并能够将直通流量从分组层转移到可能的最低层,从而通过消除不必要的分组处理来降低成本和功耗(降低总拥有成本)。主要构建模块是基于可扩展,灵活且低成本的集成分组光电节点的新型数字光传输,以及基于标准通用多协议标签交换和创新路径计算元素(PCE)解决方案的多层控制和管理。由于数字可重配置光分插复用器的灵活性,PCE可以通过选择适当的粒度进行流量梳理和路由选择,以非常有效的方式处理这两层。该可行性已通过由位于比萨的爱立信研究实验室生产的四个节点组成的网络原型进行了评估,并通过仿真分析进行了评估。

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