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Provisioning Methods for Bit-Rate-Differentiated Services in Hybrid Optical Networks

机译:混合光网络中按比特率区分的服务的供应方法

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This paper addresses the problem of routing and wavelength assignment of bit-rate-differentiated optical services in a hybrid network. Hybrid optical networks are composed of resources, such as fiber links and photonic/electronic switches, that vary in their capabilities and transmission qualities. These networks are also responsible for the realization of optical services with varying quality-of-service (QoS) guarantees. In such networks, it is required to have a cost-effective assignment of the optical and electronic resources to these services in order to maximize the revenue of the network operator. This paper deals with optical services that are defined according to their tolerance to transmission impairments. We first divide the provisioning problem into two phases: (1) routing and (2) wavelength assignment and regeneration reservation. In the routing phase, a set of k-routes are generated to select from in the second phase, where each route optimizes a specific aspect of the problem (e.g., number of hops, maximum accumulated noise, etc.). The second phase, using the information about the resources along each route, attempts at finding the best wavelength allocation on that route such that the signal quality meets the service-level agreement (SLA). The second phase also uses the minimum number of regenerator ports on intermediate nodes for the purpose of wavelength translation and signal clean-up. Comparisons of the above scheme with a probing-based method, reveal substantial enhancements lo the blocking performance with a maximum running time increase of 60%. In addition, the use of multiple routes provides higher reduction in the blocking probability over single-routing schemes. Moreover, the proposed, non-pessimistic, provisioning approach has a major impact on reducing the regeneration budget of the network.
机译:本文解决了混合网络中按比特率区分的光服务的路由和波长分配问题。混合光网络由资源(例如光纤链路和光子/电子交换机)组成,这些资源的功能和传输质量各不相同。这些网络还负责以不同的服务质量(QoS)保证来实现光服务。在这样的网络中,需要对这些服务进行光和电子资源的成本有效分配,以使网络运营商的收入最大化。本文涉及根据对传输损伤的容忍度来定义的光服务。我们首先将供应问题分为两个阶段:(1)路由和(2)波长分配和再生预留。在路由阶段中,在第二阶段中生成一组k路由以供选择,其中每个路由都会优化问题的特定方面(例如,跳数,最大累积噪声等)。第二阶段使用关于每个路由的资源信息,尝试在该路由上找到最佳波长分配,以使信号质量满足服务水平协议(SLA)。第二阶段还使用中间节点上最少数量的再生器端口,以进行波长转换和信号清除。上面的方案与基于探测的方法的比较显示出阻塞性能的显着增强,最大运行时间增加了60%。另外,与单路由方案相比,使用多条路由可以更大程度地降低阻塞概率。此外,所提出的非悲观的供应方法对减少网络的再生预算有重大影响。

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