Performance analysis of WDM optical packet switches with a hybrid buffering architecture

Lin Li, S. Scott, J. Deogun
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引用次数: 11

Abstract

For lack of optical random access memory, optical fiber delay line (FDL) is currently the only technology to implement optical buffering. Feed-forward and feedback are two types of FDL structures in optical buffering, both have advantages and disadvantages. In this paper, we present a novel architecture for WDM optical packet switches with an effective hybrid FDL buffering that combines the merits of both feed-forward and feedback schemes. The core of the switch architecture is the arrayed waveguide grating (AWG) and the tunable wavelength converter (TWC). It requires smaller optical device sizes and fewer wavelengths and has less noise than feedback architecture. At the same time feed-forward architecture can only do non-preemptive priority routing while ours supports preemptive priority routing. Our empirical results show that the new switch architecture significantly reduces packet loss probability.
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混合缓冲结构的WDM光分组交换机性能分析
由于缺乏光随机存储器,光纤延迟线(FDL)是目前唯一实现光缓冲的技术。前馈和反馈是光缓冲中的两种FDL结构,各有优缺点。在本文中,我们提出了一种新的WDM光分组交换机架构,该架构具有有效的混合FDL缓冲,结合了前馈和反馈方案的优点。开关结构的核心是阵列波导光栅(AWG)和可调谐波长转换器(TWC)。它需要更小的光学器件尺寸和更少的波长,并且比反馈结构具有更少的噪声。同时前馈架构只能进行非抢占式优先级路由,而我们的架构支持抢占式优先级路由。我们的经验结果表明,新的交换机架构显著降低了丢包概率。
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