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MPLS over WDM Network Design with Packet Level QoS Constraints based on ILP Models

机译:基于ILP型号的数据包级QoS约束,MPLS通过WDM网络设计

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MPLS (Multi-Protocol Label Switching) over WDM (Wavelength Division Multiplexing) networks are gaining significant attention due to the efficiency in resource utilization that can be achieved by jointly considering the two network layers. This paper addresses the design of MPLS over WDM networks, where some of the WDM nodes may not have packet switching capabilities. Given the WDM network topology and the offered traffic matrix, which includes the location of the edge LSRs (Label Switched Routers), we jointly determine the location of the core LSRs (i.e. the core WDM nodes that also need to include packet switching capabilities) and the lightpath routes (which are terminated on the LSRs) that minimize the total network cost. We consider constraints both at the optical and packet layers: an MPLS hop constraint on the maximum number of LSRs traversed by each LSP (Label Switched Path), which guarantees a given packet level QoS, and a WDM path constraint on the maximum length of lightpaths, which accommodates the optical transmission impairments. A novel Integer Linear Programming (ILP) formulation based on an hop-indexed approach, which we call the HOP model, is proposed. A two-phase heuristic, derived from a decomposition of the HOP model in two simpler ILP models that are solved sequentially, is also developed. The computational results show that the heuristic is efficient and produces good quality solutions, as assessed by the lower bounds computed from the HOP model. In some cases, the optimal solution is obtained with the branch-and-bound method.
机译:由于可以通过联合考虑两个网络层可以实现的资源利用率的效率,MPLS(多协议标签切换)网络上的MPLS(多协议标签切换)网络越来越大。本文解决了WDM网络上的MPLS的设计,其中一些WDM节点可能没有分组交换功能。鉴于WDM网络拓扑和所提供的业务矩阵,包括边缘LSR的位置(标签交换路由器),我们共同确定核心LSR的位置(即还需要包含分组交换功能的核心WDM节点)和LIGHTPATP路由(在LSR上终止),以最小化总网络成本。我们考虑在光学和分组层上的约束:每个LSP(标签交换路径)遍历的最大LSR数的MPLS HOP约束,它保证给定的分组级QoS,以及LightPath的最大长度的WDM路径约束,适用于光学传动障碍。提出了一种基于我们称之为跳模型的跳跃索引方法的新型整数线性编程(ILP)制定。还开发了一种两相启发式,从依次解决的两个更简单的ILP模型中源自跳模型的分解。计算结果表明,由跳模型计算的下限评估,启发式是高效的并产生良好的质量解决方案。在一些情况下,利用分支和拟合方法获得最佳解决方案。

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