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All Optical Switching Networks With Energy-Efficient Technologies From Components Level to Network Level

机译:从组件级到网络级的所有采用节能技术的光交换网络

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The key current challenges for the industrial application of all optical switching networks are energy consumption, transmission rate, spectrum efficiency, and switching throughput. The energy consumption problem is mainly researched in this paper. From the perspective of components and modules, node equipment, and network levels, different enabling technologies are proposed to overcome this problem, which are also evaluated through different experimental demonstrations. First, high-sampling-rate digital-to-analog converters (DACs) and WSS-based ROADM modules are demonstrated as components and modules for energy-efficient all optical switching networks. Then, an all optical transport network test-bed consisting of 10 Pbit/s level all optical switching nodes based on multi-level and multi-planar switching architecture is experimentally demonstrated for the first time, which can reduce power consumption by 43%. A control architecture for energy-efficient all optical switching networks is built with OpenFlow based software defined networking (SDN), and experimental results are given to verify the performance of this control architecture. Finally, we describe an All Optical Networks Innovation (AONI) project in China, which aims to explore transmission, switching, and networking technologies in all optical switching networks, and then two application scenarios are forecast based on the technical breakthroughs of this project.
机译:所有光交换网络的工业应用当前面临的主要挑战是能耗,传输速率,频谱效率和交换吞吐量。本文主要研究能耗问题。从组件和模块,节点设备和网络级别的角度出发,提出了各种支持技术来克服此问题,并通过不同的实验演示对其进行了评估。首先,展示了高采样率数模转换器(DAC)和基于WSS的ROADM模块,它们是用于节能型所有光交换网络的组件和模块。然后,首次通过实验证明了基于多级和多平面交换架构的由10 Pbit / s级的所有光交换节点组成的全光传输网络测试台,可将功耗降低43%。利用基于OpenFlow的软件定义网络(SDN)构建了高效节能的所有光交换网络的控制架构,并给出了实验结果以验证该控制架构的性能。最后,我们描述了一个中国的全光网络创新(AONI)项目,旨在探索所有光交换网络中的传输,交换和联网技术,然后根据该项目的技术突破预测两个应用场景。 / p>

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