光传输网络的风险感知路由

Ming Xia, M. Tornatore, C. Martel, B. Mukherjee
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引用次数: 13

摘要

服务水平协议(SLA)通常指定服务提供者(SP)向客户承诺的可用性。在光传输网络中,查找连接的光路通常基于光路可用性是否符合连接的sla请求的可用性。由于网络故障的随机性,特定时间段内光路的实际可用性受到不确定性的影响,SLA通常处于风险之中。我们考虑网络的不确定性,并研究路由以最小化SLA违反的概率。首先,我们使用单链路模型研究了不同设置下的SLA违反风险(即SLA违反的概率)。我们表明,SLA违反风险可能因路径而异,并受其他因素(例如,故障率、连接保持时间等)的影响,因此不能简单地用路径可用性来描述。然后,我们制定了网状网络中风险感知路由的问题,其中路由决策由SLA违反风险决定。特别是,我们专注于设计一种能够计算光路的方案,这种方案很可能成功地适应连接的sla请求的可用性。采用一种新颖的技术,将具有异质失效特征的链路转换为以相对方式捕获主要风险特征的参考链路。基于“参考链路”的概念,提出了一种仅使用有限故障信息的多项式风险感知路由方案。此外,我们扩展了我们的风险感知路由方案,在需要保护时纳入共享路径保护(SPP)。我们从SLA违反率的角度评估了我们的方案的性能和有效性,并且更一般地将它们与通用的可用性感知方法进行了对比。
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Risk-Aware Routing for Optical Transport Networks
A Service Level Agreement (SLA) typically specifies the availability a Service Provider (SP) promises to a customer. In an Optical Transport Network, finding a lightpath for a connection is commonly based on whether the availability of a lightpath availability complies with the connection's SLA-requested availability. Because of the stochastic nature of network failures, the actual availability of a lightpath over a specific time period is subject to uncertainty, and the SLA is usually at risk. We consider the network uncertainty, and study routing to minimize the probability of SLA violation. First, we use a single-link model to study SLA Violation Risk (i.e., the probability of SLA violation) under different settings. We show that SLA Violation Risk may vary by paths and is affected by other factors (e.g., failure rate, connection holding time, etc.), and hence cannot be simply described by path availability. We then formulate the problem of risk-aware routing in mesh networks, in which routing decisions are dictated by SLA Violation Risk. In particular, we focus on devising a scheme capable of computing lightpath(s) that are likely to successfully accommodate a connection's SLA-requested availability. A novel technique is applied to convert links with heterogeneous failure profiles to reference links which capture the main risk features in a relative manner. Based on the "reference link" concept, we present a polynomial Risk-Aware Routing scheme using only limited failure information. In addition, we extend our Risk-Aware Routing scheme to incorporate shared path protection (SPP) when protection is needed. We evaluate the performance and demonstrate the effectiveness of our schemes in terms of SLA violation ratio and, more generally, contrast them with the generic availability-aware approaches.
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