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Experimental Translucent-Oriented Routing for Dynamic Lightpath Provisioning in GMPLS-Enabled Wavelength Switched Optical Networks

机译:启用GMPLS的波长交换光网络中用于动态光路配置的面向实验的半透明路由

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In the evolution from opaque networks, using 3R regenerators and OEO conversions for every wavelength channel, towards transparent networks, relying on end-to-end all-optical connections, translucent networks is considered as an intermediate step. A translucent network is a cost-efficient infrastructure between opaque and transparent networks, that aims at attaining an adequate trade-off between network construction cost (i.e., due to the high cost of 3R regenerators) and the service provisioning performance (i.e., end-to-end optical signal quality). This article addresses the dynamic provisioning of connections within a GMPLS-enabled translucent wavelength switched optical network with sparse 3R regenerators. To this end, translucent-oriented GMPLS protocol extensions are proposed to, on the one hand, disseminate required per node regenerator availability and OSNR-related link and node attributes and, on the other hand, allocate regenerator resources when setting up connections. An on-line OSNR-based impairment-aware RWA algorithm is devised to compute routes aiming at satisfying two constraints: the wavelength continuity constraint and the end-to-end optical signal quality. If either constraint cannot be satisfied, available regenerators along the route are used. To the best of our knowledge, the novelty and progress of this work is that, for the first time, both the proposed translucent GMPLS protocol enhancements and the performance of the RWA algorithm are combined within an experimental control plane network scenario (CTTC's ADRENALINE testbed). This allows validating and evaluating the feasibility of the described translucent GMPLS routing strategy when being potentially deployed into real WSON networks. Several configurations with numbers of 3R regenerators and wavelength channels per link, are experimentally evaluated and compared mainly in terms of the connection blocking probability. Although concrete details about the measured average setup delay are al-nso discussed.
机译:在从不透明网络向每个波长通道使用3R再生器和OEO转换到透明网络的过程中,依靠端到端的全光连接,半透明网络被视为中间步骤。半透明网络是不透明和透明网络之间的一种经济高效的基础架构,其目的是在网络建设成本(即由于3R再生器的高昂成本)与服务供应性能(即终端服务)之间取得适当的折衷。端光信号质量)。本文介绍了在具有稀疏3R再生器的启用GMPLS的半透明波长交换光网络中动态配置连接的方法。为此,提出了面向半透明的GMPLS协议扩展,以便一方面分发每个节点再生器可用性和与OSNR相关的链路和节点属性所需的信息,另一方面,在建立连接时分配再生器资源。设计了一种基于OSNR的在线损伤感知RWA算法,旨在满足两个约束条件:波长连续性约束条件和端到端光信号质量。如果不能满足任何一个约束,则使用沿路径的可用再生器。据我们所知,这项工作的新颖性和进步之处在于,首次将建议的半透明GMPLS协议增强功能和RWA算法的性能都结合到了实验控制平面网络场景中(CTTC的ADRENALINE测试平台) 。当潜在地将其部署到实际WSON网络中时,这允许验证和评估所描述的半透明GMPLS路由策略的可行性。实验评估并比较了每条链路具有3R再生器数量和波长通道的几种配置,并主要根据连接阻塞概率进行了比较。尽管还讨论了有关所测量的平均建立延迟的具体细节。

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