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首页> 外文期刊>IEICE Transactions on Communications >Experimental Assessment of a Resilient PCE/GMPLS Controlled Translucent Wavelength Switched Optical Network
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Experimental Assessment of a Resilient PCE/GMPLS Controlled Translucent Wavelength Switched Optical Network

机译:弹性PCE / GMPLS控制的半透明波长交换光网络的实验评估

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摘要

A translucent wavelength switched optical network (WSON) is a cost-efficient infrastructure between opaque networks and transparent optical networks, which aims at seeking a graceful balance between network cost and service provisioning performance. In this paper, we experimentally present a resilient translucent WSON with the control of an enhanced path computation element (PCE) and extended generalized multi-protocol label switching (GMPLS) controllers. An adaptive routing and wavelength assignment scheme with the consideration of accumulated physical impairments, wavelength availabilities and regenerator allocation is experimentally demonstrated and evaluated for dynamic provisioning of lightpaths. By using two different network scenarios, we experimentally verify the feasibility of the proposed solutions in support of translucent WSON, and quantitatively evaluate the path computation latency, network blocking probability and service disruption time during end-to-end light-path restoration. We also deeply analyze the experimental results and discuss the synchronization between the PCE and the network status. To the best of our knowledge, the most significant progress and contribution of this paper is that, for the first time, all the proposed methodologies in support of PCE/GMPLS controlled translucent WSON, including protocol extensions and related algorithms, are implemented in a network testbed and experimentally evaluated in detail, which allows verifying their feasibility and effectiveness when being potentially deployed into real translucent WSON.
机译:半透明波长交换光网络(WSON)是不透明网络和透明光网络之间的一种经济高效的基础结构,其目的是在网络成本和服务提供性能之间寻求合理的平衡。在本文中,我们实验性地提出了一种弹性半透明WSON,该WSON具有增强路径计算元素(PCE)和扩展的通用多协议标签交换(GMPLS)控制器的控制。通过实验证明了一种自适应路由和波长分配方案,该方案考虑了累积的物理损伤,波长可用性和再生器分配,并为动态设置光路进行了评估。通过使用两种不同的网络方案,我们通过实验验证了所提出的解决方案支持半透明WSON的可行性,并定量评估了端到端光路恢复期间的路径计算延迟,网络阻塞概率和服务中断时间。我们还将深入分析实验结果,并讨论PCE与网络状态之间的同步。据我们所知,本文最重要的进展和贡献是,首次在网络中实现了所有支持PCE / GMPLS控制的半透明WSON的提议方法,包括协议扩展和相关算法。测试台并进行了详细的实验评估,可以在将其部署到真正的半透明WSON中时验证其可行性和有效性。

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