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Optical burst switching: a viable solution for terabit IP backbone

机译:光突发交换:太比特IP主干网的可行解决方案

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摘要

Wavelength-division multiplexing has emerged as an important physical layer technology. Optical transmission provides a physical layer capable of carrying bits at the speed at the order of a gigabit per second. Optical burst switching is proposed to overcome the shortcomings of conventional WDM deployment, such as lack of fine bandwidth granularity in wavelength routing and electronic speed bottlenecks in SONET/SDH. We describe an architecture for IP network over the OBS WDM transmission core. The use of MPLS-type technique for forwarding data bursts and the inclusion of a medium access control layer between the optical (WDM) and IP layers are the key ingredients of the proposed architecture. In particular, the architecture is based on provisioning MPLS paths, also called label switched paths, of desired quality of service through the OBS WDM transmission core. The MAC layer performs various OBS-specific functions, such as burst assembly, burst scheduling, and offset setting/traffic shaping. While burst assembly and burst scheduling are relatively straightforward, we point out that the offset setting strategy has significant impact on the performance of IP network operating over OBS WDM core. We describe a shaping scheme to set the offset, an important system parameter for OBS, between the successive data bursts of a given data stream (label switched path) and their associated control packets. This scheme results in robust operation of the network and also facilitates traffic engineering. Guidelines are provided for implementing various IP QoS mechanisms in the optical backbone using OBS.
机译:波分复用已经成为一种重要的物理层技术。光传输提供了一个物理层,能够以每秒千兆比特的速度传输比特。提出光突发交换以克服常规WDM部署的缺点,例如波长路由中缺乏精细的带宽粒度以及SONET / SDH中的电子速度瓶颈。我们描述了OBS WDM传输核心上IP网络的体系结构。使用MPLS类型的技术来转发数据突发,并在光(WDM)和IP层之间包含媒体访问控制层是所提出体系结构的关键要素。特别地,该架构基于通过OBS WDM传输核心提供期望的服务质量的MPLS路径(也称为标签交换路径)。 MAC层执行各种特定于OBS的功能,例如突发组合,突发调度和偏移设置/流量整形。虽然突发组装和突发调度相对简单,但我们指出,偏移量设置策略对在OBS WDM核心上运行的IP网络的性能具有重大影响。我们描述了一种整形方案,用于设置给定数据流(标签交换路径)的连续数据突发及其关联的控制数据包之间的偏移量(OBS的重要系统参数)。该方案导致网络的稳定运行,并且还简化了流量工程。提供了使用OBS在光骨干网中实现各种IP QoS机制的指南。

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