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Performance analysis of a prioritization scheduling scheme for asynchronous optical packet switching networks

机译:异步光分组交换网络优先级调度方案的性能分析

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All-optical packet switching is a promising scheme to meet high-capacity data transmission and avoid the bottleneck of optical-electrical-optical conversion. However, optical buffers implemented by Fiber Delay Lines (FDLs) suffer a signal quality issue that noise and crosstalk from optical components of FDL buffers induce signal loss and noise accumulation. Optical packets will be dropped, if signal loss and noise accumulation result in poor signal quality. Because of this, packet scheduling becomes more difficult in the FDL buffer than in the RAM buffer, and requires additional design considerations to reduce packet loss. In this paper, we propose a prioritization scheduling scheme for asynchronous all-optical packet switching networks with FDL buffers. The prioritization scheduling scheme is intended to minimize the packet loss probability and the average latency of the networks by ranking packets in the optimal balance between latency and residual distance. We demonstrate quantitatively how to achieve the fitting balance between latency and residual distance so that the network performance can be improved significantly.
机译:全光分组交换是一种有前途的方案,可以满足大容量数据传输并避免光电转换的瓶颈。但是,由光纤延迟线(FDL)实现的光学缓冲器会遇到信号质量问题,即来自FDL缓冲器光学组件的噪声和串扰会引起信号损失和噪声累积。如果信号丢失和噪声积累导致信号质量较差,则光分组将被丢弃。因此,与FRAM缓冲区相比,FDL缓冲区中的数据包调度变得更加困难,并且需要进行其他设计考虑以减少数据包丢失。在本文中,我们提出了一种具有FDL缓冲区的异步全光分组交换网络的优先级调度方案。优先级调度方案旨在通过在延迟和剩余距离之间的最佳平衡中对数据包进行排名,来最大程度地减少数据包丢失的可能性和网络的平均延迟。我们定量演示了如何在等待时间和剩余距离之间实现合适的平衡,从而可以显着提高网络性能。

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