An adaptive survivability admission control mechanism using backup VPs for self-healing ATM networks

Chi-Chun Lo, Bing-Wen Chuang
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引用次数: 2

Abstract

A restoration mechanism based on backup capacity provides a solution for assuring network survivability. In this paper we propose an adaptive survivability admission control mechanism using backup virtual paths for self-healing asynchronous transfer mode (ATM) networks. Working virtual paths (WVP) and backup virtual paths (BVP) are configured during the network design phase. For each call request, the proposed mechanism selects a pair of WVP and BVP followed by bandwidth reservation for the pair only if both the WVP and the BVP selected succeed in the call admission control. A backup dependency matrix (BDM) is suggested for recording the most up-to-date information of backup capacity required on a link for restoring a failure on other links. However backup capacity actually reserved on a link is shared by all BVP passing the same link. This "sharing" concept substantially reduces the amount of backup capacity required. The selection of BVP uses the BDM so as to make the selection adaptive to the current traffic loads on the network. Two BVP selection methods, min-cost and min-expectation, are proposed. The min-cost strategy increases network utilization while maintaining full survivability under a single link failure. On the contrary, the min-expectation strategy enhances network survivability by slightly reducing network utilization.
自修复ATM网络中使用备份vp的自适应生存能力准入控制机制
基于备份容量的恢复机制为保证网络的生存性提供了一种解决方案。本文提出了一种基于备份虚拟路径的自适应生存性准入控制机制,用于自愈异步传输模式(ATM)网络。在网络设计阶段配置工作虚拟路径(WVP)和备份虚拟路径(BVP)。对于每个呼叫请求,该机制选择一对WVP和BVP,然后仅当所选择的WVP和BVP都在呼叫接纳控制中成功时为这对WVP预留带宽。建议使用备份依赖矩阵(BDM)记录一条链路所需备份容量的最新信息,以便在其他链路上恢复故障。但是,在链路上实际保留的备份容量由通过同一链路的所有BVP共享。这种“共享”概念大大减少了所需的备份容量。BVP的选择使用BDM,使选择能够适应当前网络的流量负荷。提出了最小成本和最小期望两种BVP选择方法。最小成本策略提高了网络利用率,同时在单链路故障下保持了完全的生存能力。相反,最小期望策略通过略微降低网络利用率来提高网络的生存能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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