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Multilayer Protection with Availability Guarantees in Optical WDM Networks

机译:WDM网络中具有可用性保证的多层保护

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Survivability is a key concern in modern network design. This paper investigates the problem of survivable dynamic connection provisioning in general telecom backbone networks, that are mesh structured. We assume differentiated services where connections may have different availability requirements, so they may be provisioned differently with protection (if needed) based on their availability requirements and current network state. The problem of effectively provisioning differentiated-service requests, that has been widely investigated for connections routed at the physical layer, assumes peculiar features if we consider sub-wavelength requests at the logical layer that have to be protected (or more generically, whose availability target has to be guaranteed), but also have to be groomed for an efficient use of network resources. An integrated multilayer approach is necessary that considers requirements and grooming of connections at the logical layer as well as their routing and availability at the physical layer. Joint availability-guaranteed routing and traffic grooming may lead to a negative interaction, since the objective of the first problem (guaranteeing a given level of availability to the connections) clashes with the objective of the other problem (minimizing resource consumption). For a multilayer WDM mesh network, we propose new multilayer routing strategies that perform effective availability-guaranteed grooming of sub-wavelength connections. These strategies jointly considers connection availability satisfaction and resource optimization and are developed under two different practical hypotheses: guaranteed target, i.e., a connection is routed only if its availability target is satisfied, and best-effort target, a connection is always routed and, when the availability target cannot be guaranteed, the path with the best possible availability is provisioned. Numerical results are reported and discussed for the two approaches mentioned above. In both cases, the results show high effectiveness of our provisioning strategy.
机译:生存能力是现代网络设计中的关键问题。本文研究了网状结构的通用电信骨干网中可生存的动态连接供应问题。我们假设差异化服务的连接可能具有不同的可用性要求,因此根据可用性要求和当前网络状态,可以为它们提供不同的保护(如果需要)。如果我们考虑必须保护逻辑层的子波长请求(或更笼统地说,其可用性目标),那么有效配置差异化服务请求的问题就已经被广泛研究,该问题针对物理层路由的连接具有特殊的功能。必须保证),还必须进行修饰以有效利用网络资源。必须考虑到逻辑层的连接要求和修饰以及物理层的路由和可用性,采用集成的多层方法。联合可用性保证的路由和流量梳理可能导致负面的相互作用,因为第一个问题的目的(保证连接的给定级别的可用性)与另一个问题的目的(最小化资源消耗)相冲突。对于多层WDM网状网络,我们提出了新的多层路由策略,可以执行有效的可用性保证的亚波长连接修饰。这些策略共同考虑了连接可用性满意度和资源优化,并在两种不同的实际假设下进行开发:保证目标,即仅在满足其可用性目标时才对连接进行路由;而尽力而为目标则始终对连接进行路由;以及如果无法保证可用性目标,则会提供具有最佳可用性的路径。报告并讨论了上述两种方法的数值结果。在这两种情况下,结果都表明我们的置备策略非常有效。

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