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On the problem of capacity allocation and flow assignment in self-healing ATM networks

机译:自愈式ATM网络的容量分配和流量分配问题

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摘要

In the current overlay transport networks, IP/ATM/SONET/DWDM, each layer manages its own control plane, each control plane acting independently of what happens in the other. In the course of recent years, the generalized multi-protocol label switching (GMPLS) has emerged as the new unified control plane for all the above transport layers. As such, the already installed ATM core resource management features must be reused as a particular implementation of GMPLS, either directly or with some adaptations. Among such transferable research work are studies related to the problem of capacity allocation and flow assignment in self-healing ATM networks. This problem has been investigated by many authors, using two main design approaches: the path-based and the link-based approaches. In the path-based design approach, the focus in almost all proposed solutions has been to determine the optimal spare capacity and backup virtual paths (BVPs) allocation for all traffic flows. To our knowledge, no study has been done to quantify the impact of the selection of BVPs on the optimized spare capacity allocation (SCA). In this paper, we address this issue by comparing four SCA design schemes quantitatively in terms of spare capacity requirements (SCRs). The comparison is based on spare optimization, a single link failure or node failure scenario, and 100% restoration. We also introduce a link-based design approach of the above problem and show that the solution obtained is adequate in terms of grade of service and quality of service requirements.
机译:在当前的IP / ATM / SONET / DWDM覆盖传输网络中,每一层都管理自己的控制平面,每个控制平面的行为独立于另一层。近年来,通用的多协议标签交换(GMPLS)已经成为上述所有传输层的新统一控制平面。这样,已经安装的ATM核心资源管理功能必须直接或通过某些修改作为GMPLS的特定实现方式进行重用。这种可转移的研究工作包括与自愈式ATM网络中的容量分配和流分配问题有关的研究。许多作者已经使用两种主要的设计方法来研究此问题:基于路径的方法和基于链接的方法。在基于路径的设计方法中,几乎所有提出的解决方案的焦点都在于确定所有业务流的最佳备用容量和备用虚拟路径(BVP)分配。据我们所知,尚未进行量化BVP选择对优化备用容量分配(SCA)的影响的研究。在本文中,我们通过根据备用容量需求(SCR)定量比较四种SCA设计方案来解决此问题。比较是基于备用优化,单链路故障或节点故障方案以及100%还原的情况。我们还针对上述问题引入了基于链接的设计方法,并表明所获得的解决方案在服务等级和服务质量要求方面是足够的。

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