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The potential savings of SDN compliant sub-wavelength switching as a future carrier grade solution for the metropolitan network

机译:SDN兼容的子波长转换的潜在节省,可作为城域网的未来运营商级解决方案

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Metropolitan area networks are currently challenged by a sharp increase of peak traffic demands, and would thus benefit from flexible network mechanisms able to ensure excellent Quality of Service (QoS) while limiting costs. In this paper, we evaluate the gain in Capital and Operational Expenditures (CAPEX and OPEX) brought by Time-domain Wavelength Interleaved Network (TWIN) thanks to a dynamic control plane implemented in a Software Defined Network (SDN) framework. The SDN compliant TWIN control plane attributes resources and activates the transmitters (Tx), receivers (Rx) and transceivers (TRx) according to traffic variations. The present paper first recaps how to dimension TWIN in terms of Tx, Rx or TRx to support a given traffic matrix. It is then shown that 20% resource over-provisioning allows to meet the metro level QoS requirements set by the Metro Ethernet Forum (MEF). Then, taking into account this over-provisioning value, a comparative study, assessing the OPEX and CAPEX savings for different configuration periods' duration (varying between 5 min and 6 h) is carried out. The obtained results show that the dynamic network re-configuration approach can bring some CAPEX savings and highly significant OPEX savings in a realistic metropolitan network scenario, even for rather large configuration periods (e.g. 1 h). Finally, using a control plane based on this configuration period, the CAPEX and OPEX for TWIN are compared with those for the current Optical Circuit Switching (OCS) transport technologies (both opaque and transparent). It is shown that TWIN CAPEX/OPEX savings are important even if the TWIN's Tx/Rx/TRx unit expenditure cost is many times more expensive than that of OCS.
机译:当前,城域网面临峰值流量需求急剧增加的挑战,因此将受益于灵活的网络机制,该机制能够确保出色的服务质量(QoS),同时限制成本。在本文中,由于在软件定义网络(SDN)框架中实现了动态控制平面,因此我们评估了时域波长交错网络(TWIN)带来的资本和运营支出(CAPEX和OPEX)的收益。符合SDN的TWIN控制平面分配资源并根据流量变化激活发送器(Tx),接收器(Rx)和收发器(TRx)。本文首先概述了如何根据Tx,Rx或TRx来确定TWIN的尺寸,以支持给定的流量矩阵。然后显示出20%的资源超额配置可以满足由城域以太网论坛(MEF)设置的城域级别QoS要求。然后,考虑到这个超额配置的值,进行了一项比较研究,评估了不同配置周期(5分钟至6小时)内OPEX和CAPEX节省的费用。获得的结果表明,即使在相当大的配置时间段(例如1 h)内,动态网络重新配置方法也可以在实际的城域网络场景中节省一些CAPEX和显着节省的OPEX。最后,使用基于此配置周期的控制平面,将TWIN的CAPEX和OPEX与当前的光电路交换(OCS)传输技术(不透明和透明)进行比较。结果表明,即使TWIN的Tx / Rx / TRx单位支出成本比OCS贵很多倍,节省TWIN CAPEX / OPEX还是很重要的。

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