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Design of IP optical nodes based on AWG with shared tunable wavelength converters

机译:共享可调波长转换器的基于AWG的IP光节点设计

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In order to meet the ever-growing demand of transmission capacity, optical packet switching technology is emerging as a major candidate, promising to allow fast dynamic allocation of WDM channels, combined with a high degree of statistical resource sharing. This paper describes the architecture of an optical switching node for IP networks based on an arrayed waveguide grating device to route packets. Given the high cost of optical components needed to route packets inside the AWG, two node architectures equipped with a pool of tunable wavelength converters fully shared among all input ports are proposed. Here an analytical model is developed that allows us to evaluate the performance of a bufferless optical switch architecture. Computer simulation is used as well to evaluate the packet loss probability in the node under various buffering arrangements by comparing different scheduling algorithms.
机译:为了满足不断增长的传输容量需求,光分组交换技术正在成为主要的候选者,它有望实现WDM信道的快速动态分配以及高度的统计资源共享。本文介绍了一种用于IP网络的光交换节点的体系结构,该节点基于阵列波导光栅设备来路由数据包。考虑到在AWG内路由数据包所需的光学组件的高成本,提出了两个节点架构,这些架构配备了在所有输入端口之间完全共享的可调波长转换器池。在这里,我们开发了一个分析模型,使我们能够评估无缓冲光开关体系结构的性能。通过比较不同的调度算法,还使用计算机仿真来评估在各种缓冲安排下节点中的分组丢失概率。

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