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Packetisation in Optical Packet Switch Fabrics using adaptive timeout values

机译:使用自适应超时值的光学包交换机结构的循陆

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Hybrid electro-optical packet switches utilize optics in the backplane to switch optical packets from inputs to outputs on electronic line cards. The optical packets are traditionally considerably larger than minimum size IP packets. IP packets entering the switch must be formatted (segmented) and encapsulated in the optical packet format. This process is called packetisation or aggregation. This paper investigates a novel technique for aggregating IP packets into optical packets. When the first segment arrives in an optical packet, a timer is started. The optical packet is marked ready for transmission either because the timer reaches a specific timeout value, or because the optical packet is completely filled with segments. Only two distinct values of the timeout value are used. Which of the two timeout values to use, is selected by 3 different control thresholds. The first threshold level applies to the inter arrival rate at the individual VOQs. The remaining thresholds applies to the optical slot level inter arrival rate at the input and output line cards. If any measurements are beyond a given threshold, the higher timeout value is used. The proposed method can be used to make a trade-off between delay and throughput in hybrid electro-optical packet switching. Furthermore, it is investigated how large a speedup is required in order to provide 100% throughput.
机译:混合电动光学数据包交换机利用背板中的光学器件,将光数据分开从输入到电子线卡上的输出。光学分组传统上大得多大于最小尺寸IP分组。进入交换机的IP数据包必须格式化(分段)并以光数据包格式封装。此过程称为包或聚合。本文调查了将IP分组聚集到光学数据包中的新技术。当第一段到达光数据包时,将启动计时器。光学分组的标记为Ready,因为定时器达到特定超时值,或因为光学分组完全填充有段。仅使用超时值的两个不同的值。要使用的两个超时值中的哪一个由3个不同的控制阈值选择。第一阈值水平适用于各个VOQ的到达差价。剩余的阈值适用于输入和输出线卡上的光学插槽电平帧间到达速率。如果任何测量超出给定阈值,则使用较高的超时值。所提出的方法可用于在混合电光分组切换中的延迟和吞吐量之间进行折衷。此外,调查了如何提供100%吞吐量所需的大量加速。

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