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Analytical MMAP-Based Bounds for Packet Loss in Optical Packet Switching with Recirculating FDL Buffers

机译:具有循环FDL缓冲区的光分组交换中基于丢包的基于MMAP的解析边界

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The major goal of optical packet switching (OPS) is to match switching technology to the huge capacities provided by (D)WDM. A crucial issue in packet switched networks is the avoidance of packet losses stemming from contention. In OPS, contention can be solved using a combination of exploitation of the wavelength domain (through wavelength conversion) and buffering. To provide optical buffering, fiber delay lines (FDLs) are used. In this paper, we focus on an optical packet switch with recirculating FDL buffers and wavelength converters. We introduce the Markovian arrival process with marked transitions (MMAP), which has very desirable properties as a traffic model for OPS performance assessment. Using this model, we determine lower and upper bounds for the packet loss rate (PLR) achieved by the aforementioned switch. The calculation of the PLR bounds through matrix analytical methods is repeated for a wide range of traffic conditions, including highly non-uniform traffic, both in space (i.e., packet destinations) and time (bursty traffic). The quality of these bounds is verified through comparison with simulation results.
机译:光分组交换(OPS)的主要目标是使交换技术与(D)WDM提供的巨大容量相匹配。分组交换网络中的一个关键问题是避免竞争引起的分组丢失。在OPS中,可以结合使用波长域(通过波长转换)和缓冲来解决争用。为了提供光缓冲,使用了光纤延迟线(FDL)。在本文中,我们重点研究具有循环FDL缓冲器和波长转换器的光分组交换机。我们介绍了带有标记过渡(MMAP)的马尔可夫到达过程,该过程具有非常理想的属性,可作为OPS性能评估的流量模型。使用此模型,我们确定由上述交换机实现的丢包率(PLR)的上限和下限。对于空间范围(即数据包目的地)和时间(突发流量)中的各种流量条件(包括高度不均匀的流量),都将通过矩阵分析方法对PLR边界进行重复计算。通过与仿真结果进行比较,可以验证这些边界的质量。

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