在具有光核的扇形分组交换机中提供灵活的带宽

S. A. Paredes, Srija Srivastava, T. Hall
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引用次数: 1

摘要

描述了一种光电三级分组交换机架构,该架构发挥了作为存储技术的电子学和作为通信技术的光子学的优势,同时适应了当前透明光子开关技术相对缓慢的重构。通过求解由流量定义的二部图上的边着色问题,得到了光子中心舞台的构型。这很容易实现,并且只有在到达流量的统计模式中存在持续变化时才需要重复计算。通过取消每个时隙调度器,可以消除主要的瓶颈;以适度的空间加速为代价,这很容易用光子技术提供。通过简单交通模型的仿真验证了该体系结构和方法,该模型捕捉了真实交通的非平稳和突发特性。
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Flexible bandwidth provision in a sectored packet switch with an optical core
An opto-electronic three-stage packet switch architecture is described that plays to the strengths of electronics as a memory technology and to photonics as a communications technology whilst accommodating the relatively slow reconfiguration of current transparent photonic switch technology. The configuration of the photonic centre stage is found by solving an edge-colouring problem on a bipartite graph defined by the traffic. This is simple to implement and the calculation need be repeated only if there are persistent variations in the statistical pattern of the arriving traffic. A major bottleneck is removed by dispensing with a per-time slot scheduler; at the price of only a modest spatial speed-up, which is easy to provide with photonic technology. The architecture and method have been verified by simulation using simple traffic models that capture the non-stationary and bursty nature of real traffic.
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