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Signaling protocol extensions for converter-saving wavelength assignment in GMPLS optical networks

机译:信令协议扩展,用于在GMPLS光网络中节省转换器的波长分配

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GMPLS architecture specifies signaling protocol extensions, such as the label set, to support dynamic connection setup in the optical domain. However, current extensions do not carry information to minimize converter utilization in wavelength routed optical networks. Converter waste increases the network cost and negatively impacts the blocking probability if the available converters are limited. With the aim of reducing wavelength converter utilization, in this paper we propose to use standard (suggested label) and novel (suggested vector) extensions to collect information on the label (i.e., wavelength) preference from the nodes along the connection path. Two advanced label preference schemes are proposed exploiting these extensions: SL scheme supports the label set with the suggested label, carrying one preferred wavelength; SV scheme supports the label set with the suggested vector, indicating the preference level for each wavelength. They are compared against two currently used schemes: NP (no preference) scheme uses no extension; LS scheme uses just the label set to notify the acceptable wavelengths. In all schemes, network nodes adopt either first-fit or random tie-breaking policies to select a wavelength from a pool with equal preference. Simulations with unlimited and limited amount of wavelength converters show that both the suggested label and the suggested vector extensions significantly improve network performance. SL and SV schemes allow to decrease wavelength converter utilization compared to NP and LS schemes. When the converter count is limited, SL and SV also reduce blocking probability. SV with first-fit policy outperforms all the other schemes in terms of both converter utilization and blocking, while SL obtains very good performance without requiring any protocol modification.
机译:GMPLS体系结构指定信令协议扩展(例如标签集)以支持光域中的动态连接设置。然而,当前的扩展没有携带使波长路由的光网络中的转换器利用率最小化的信息。如果可用的转换器受到限制,转换器浪费会增加网络成本,并对阻塞几率产生负面影响。为了降低波长转换器的利用率,在本文中我们建议使用标准(建议的标签)和新颖的(建议的矢量)扩展从沿连接路径的节点收集有关标签(即波长)优先级的信息。利用这些扩展,提出了两种先进的标签优先选择方案:SL方案支持带有建议标签的标签集,并带有一个优选波长。 SV方案支持带有建议向量的标签集,指示每个波长的优先级别。将它们与两种当前使用的方案进行比较:NP(无优先级)方案不使用扩展; LS方案仅使用标签集来通知可接受的波长。在所有方案中,网络节点都采用先拟合或随机打破平局的策略从优先级相同的池中选择波长。无限和有限数量的波长转换器的仿真表明,建议的标签和建议的矢量扩展都可以显着提高网络性能。与NP和LS方案相比,SL和SV方案可降低波长转换器的利用率。当转换器数量受到限制时,SL和SV也会降低阻塞概率。在转换器利用率和阻塞方面,具有优先策略的SV优于所有其他方案,而SL无需任何协议修改即可获得非常好的性能。

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