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The performance of OCDM/WDM with buffering based on shared fiber delay line

机译:基于共享光纤延迟线缓冲的OCDM / WDM的性能

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Packet contention in photonic packet switches is a key issue in network performance. Without using a proper contention scheme, switches will get congested earlier. Although Optical Code Division Multiplexing, Wavelength Division Multiplexing (OCDM/WDM) applies a code and wavelength as a path in the node, the capacity granularity of OCDM/WDM may become too large to switch the packets among input and output. A possible solution for this issue is to employ optical buffering techniques that incorporate fiber delay lines (FDLs) in OCDM/WDM architecture. The proposed scheme takes the advantage of shared buffering, optical coding and wavelength conversion to enhance the switch performance. The performance evaluation of the hybrid optical switch architecture is validated through extensive simulation. This paper analyzes the performance of proposed system based on fixed sized packet (synchronized packet). It is shown that with this algorithm, the hybrid optical-buffered switch can achieve a throughput of ~ 0.99 and a loss rate of 1.9*10 respectively, at a heavy load of 0.9.
机译:光子数据包交换机中的数据包争用是网络性能的关键问题。如果不使用适当的争用方案,则交换机将更早地拥塞。虽然光学码分复复用,波分复用(OCDM / WDM)将代码和波长应用于节点中的路径,但OCDM / WDM的容量粒度可能变得太大,以在输入和输出之间切换分组。该问题的可能解决方案是采用光学缓冲技术,该技术在OCDM / WDM架构中包含纤维延迟线(FDL)。所提出的方案采用共享缓冲,光学编码和波长转换的优点,以增强开关性能。通过广泛的仿真验证了混合光学开关架构的性能评估。本文分析了基于固定大小包(同步数据包)的提出系统的性能。结果表明,利用该算法,混合光学缓冲开关可以分别实现〜0.99的吞吐量和1.9 * 10的损耗率,其重负荷为0.9。

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