透明WDM网络中考虑不同物理层约束的光路路由

L. Wosinska, A. Jirattigalachote, P. Monti, A. Tzanakaki, K. Katrinis
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引用次数: 4

摘要

波分复用(WDM)技术被认为是解决下一代网络快速增长的容量需求的最终答案。许多用于光路配置的路由和波长分配(RWA)算法基于网络资源的可用性,并假设光纤和组件是理想的。在现实中,物理损伤会降低通过光纤段和光学元件传播的光信号的质量。为了解决这个问题,目前提出了基于损伤约束路由(ICBR)算法,该算法在连接提供过程中考虑了物理损伤,以防止选择信号质量差的光路。然而,这些算法只支持单个(最高)传输质量阈值,对所有连接请求都使用相同的阈值。这并不能很好地适应下一代网络所期望支持的各种各样的服务和潜在的完全不同的QoS需求。因此,降低了网络资源的利用效率。本文证明,当使用具有不同物理层约束的ICBR算法时,可以在阻塞概率方面取得显着改进。在考虑无保护、共享路径保护(SPP)和专用路径保护(DPP)连接请求时,将性能与传统的损伤感知路由方法进行比较。实现的改进是更有效地利用资源的结果,因为可以通过选择提供“足够好”的光信号质量的网络资源来避免不必要的连接阻塞,“足够好”足以满足特定的连接请求。以满足特定的连接请求。
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Lightpath routing considering differentiated physical layer constraints in transparent WDM networks
Wavelength division multiplexing (WDM) technology is considered to be the ultimate answer to the rapidly growing capacity demand of next generation networks. Many routing and wavelength assignment (RWA) algorithms, proposed for lightpath provisioning, base their routing decisions on the availability of network resources, and assume that optical fibers and components are ideal. In reality, physical impairments degrade the quality of the optical signal propagating through fiber segments and optical components. To cope with this problem, Impairment Constraint Based Routing (ICBR) algorithms, that consider physical impairments during connection provisioning, are currently proposed to prevent selecting lightpaths with poor signal quality. However, these algorithms support only a single (highest) quality of transmission threshold, the same one for all connection requests. This does not fit well with the variety of services, with potentially disparate QoS requirements, that the next generation networks are expected to support. Consequently, the efficiency of network resource utilization is reduced. This paper demonstrates that a significant improvement, in terms of blocking probability, can be achieved when using an ICBR algorithm with differentiated physical layer constraints. Performance is compared with conventional impairment aware routing approaches when unprotected, shared path protected (SPP), and dedicated path protected (DPP) connection requests are considered. The achieved improvement is a result of more efficient resource utilization as unnecessary connection blocking can be avoided by selecting network resources offering optical signal quality that is “good enough”good enough to satisfy a specific connection request. to satisfy a specific connection request.
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