Design of delay-line buffers for asynchronous optical packet switched networks

Shuna Yang, N. Stol
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Abstract

Optical buffering is one major challenge in realizing all-optical packet switching. In this paper we focus on a delay-line buffer architecture, called a Multiple-Input Single-Output (MISO) buffer, which is realized by cascaded fiber delay lines (FDLs). We consider the MISO buffers in a network scenario where the incoming packets are asynchronous and of fixed length. Instead of matching the fixed packet length, the length of basic FDL is adjusted to minimize the packet loss under different scenarios. A novel Markov model is proposed to analyze the performance of our buffering scheme, in terms of packet loss ratio, average packet delay and the output link utilization. Both simulation and analytical results show that the optimal basic FDL length is equal to the fixed packet length under low system load. However, under high system load, the basic FDL length is much smaller than fixed packet length for minimum packet loss. In addition, this paper gives clear guidelines for designing optimal basic FDL lengths under different network scenarios. It is noticeable that this optimal length value is independent of the buffer sizes.
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异步光分组交换网络中延迟线缓冲器的设计
光缓冲是实现全光分组交换的主要挑战之一。本文主要研究一种延迟线缓冲器架构,称为多输入单输出(MISO)缓冲器,它由级联光纤延迟线(fdl)实现。我们在传入数据包是异步且长度固定的网络场景中考虑MISO缓冲区。基本FDL的长度不按照固定的报文长度进行匹配,而是根据不同的场景进行调整,使丢包量最小化。提出了一种新的马尔可夫模型,从丢包率、平均包延迟和输出链路利用率等方面分析了该缓冲方案的性能。仿真和分析结果均表明,在低系统负载情况下,最优基本FDL长度等于固定包长度。然而,在高系统负载下,基本的FDL长度比固定的数据包长度要小得多,以减少数据包的丢失。此外,本文给出了在不同网络场景下设计最优基本FDL长度的明确准则。值得注意的是,这个最佳长度值与缓冲区大小无关。
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