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Research of differentiated QoS routing in GMPLS-based IP/WDM networks

机译:基于GMPLS的IP / WDM网络中区分QoS路由的研究

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摘要

At this point in technology's evolution, the simplicity, elegance, extensibility, and broad compatibility of the Internet protocol suite has made it the automatic choice for most forms of communication. The attempts at resolution of this apparent dichotomy consist of a collection of technologies and philosophies known as Quality of Service. In an IP network, QoS defines the ability to compensate for traffic characteristics without compromising average throughput. Clearly, optimizing QoS performance for all traffic types on an IP network presents a daunting challenge. To partially address this challenge, several Internet Engineering Task Force groups have been working on standardized approaches for IP-based QoS technologies. The IETF's approaches fall into four categories: prioritization using differentiated services, reservation using integrated services, label switching using multi-protocol label switching, bandwidth management using the subnet bandwidth manager. Differentiated services classify per-hop behaviors on the basis of a Diffserv code point attached to the type of service byte in each packet's IP header. This DSCP approach represents a form of soft QoS that rather coarsely classifies services through packet marking. The differentiated QoS routing in GMPLS-based IP/WDM Networks are a promising candidate for the next generation optical Internet networks. By using a unified control plane, such networks make more efficient usage of network resources both at the IP layer and the WDM optical layer. In this paper, we consider prioritized routing of bandwidth-guaranteed Label Switched paths (LSPs) providing service differentiation between classes of high and normal priority traffic. The QoS delay requirements are assumed to be translated into bandwidth and O-E-O conversion requirements. We present a graphical representation of the integrated network state which is different from other conventional graphical representations in that it models the cost of usage of ports and o-e-o conventions in addition to the usage of wavelength and bandwidth resources. We then develop a threshold-protection-based routing algorithm which admits high-priority LSPs in preference over normal-priority LSPs and satisfies the bandwidth and o-e-o constraint requirements. Through extensive simulation experiments, we approve the service differentiation and effectiveness of our algorithm.
机译:在技​​术发展的这一点上,Internet协议套件的简单,优雅,可扩展性和广泛兼容性使其成为大多数通信形式的自动选择。解决这种明显的二分法的尝试包括一系列被称为服务质量的技术和理念。在IP网络中,QoS定义了在不影响平均吞吐量的情况下补偿流量特性的能力。显然,为IP网络上的所有流量类型优化QoS性能提出了艰巨的挑战。为了部分解决这一挑战,几个Internet工程任务组一直在研究基于IP的QoS技术的标准化方法。 IETF的方法分为四类:使用差异化服务的优先级划分,使用集成服务的预留,使用多协议标签交换的标签交换,使用子网带宽管理器的带宽管理。区分服务根据附加到每个数据包IP报头中服务字节类型的Diffserv码点对每跳行为进行分类。这种DSCP方法代表一种软QoS的形式,它通过数据包标记将服务粗略地分类。基于GMPLS的IP / WDM网络中的差异化QoS路由是下一代光互联网网络的有希望的候选者。通过使用统一的控制平面,这样的网络可以更有效地利用IP层和WDM光层的网络资源。在本文中,我们考虑了带宽保证的标签交换路径(LSP)的优先级路由,从而在高优先级和普通优先级流量类别之间提供了服务区分。假定QoS延迟要求已转换为带宽和O-E-O转换要求。我们提供了一个集成网络状态的图形表示形式,该图形表示形式与其他常规图形表示形式的不同之处在于,除了波长和带宽资源的使用之外,它还对端口和o-e-o约定的使用成本进行了建模。然后,我们开发一种基于阈值保护的路由算法,该算法允许高优先级LSP优先于正常优先级LSP,并满足带宽和o-e-o约束要求。通过广泛的仿真实验,我们批准了算法的服务差异性和有效性。

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