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The arrayed-waveguide grating-based single-hop WDM network: an architecture for efficient multicasting

机译:基于阵列的波导光栅的单跳WDM网络:高效多播的架构

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Research on multicasting in single-hop wavelength-division-multiplexing (WDM) networks has so far focused on networks based on the passive star coupler (PSC), a broadcast device. It has been shown that multicasting performance is improved by partitioning multicast transmissions into multiple multicast copies. However, the channel bottleneck of the PSC, which does not allow for spatial wavelength reuse, restricts the multicast performance. We investigate multicasting in a single-hop WDM network that is based on an arrayed-waveguide grating (AWG), a wavelength routing device that allows for spatial wavelength reuse. In our network, optical multicasting is enabled by wavelength-insensitive splitters that are attached to the AWG output ports. Multicasts are partitioned among the splitters and each multicast copy is routed to a different splitter by sending it on a different wavelength. We demonstrate that the spatial wavelength reuse in our network significantly improves the throughput-delay performance for multicast traffic. By means of analysis and simulations, we also demonstrate that, for a typical mix of unicast and multicast traffic, the throughput-delay performance is dramatically increased by transmitting multicast packets concurrently with control information in the reservation medium access control protocol of our AWG-based network.
机译:到目前为止,在单跳波长多路复用(WDM)网络中的多播研究了基于被动星耦合器(PSC),广播设备的网络。已经表明通过将多播传输分成多播副本来改善多播性能。但是,PSC的信道瓶颈,不允许空间波长重复使用,限制了多播性能。我们在基于阵列 - 波导光栅(AWG)的单跳WDM网络中调查多播,该波长路由设备允许空间波长重复使用。在我们的网络中,光学多播由连接到AWG输出端口的波长不敏感的分离器启用。多播在分离器中分区,并且通过将其发送到不同的波长来路由到不同的分隔器。我们证明我们网络中的空间波长重复使用显着提高了多播流量的吞吐量延迟性能。通过分析和仿真,我们还证明,对于单播和多播流量的典型组合,通过在基于AWG的预约介质访问控制协议中同时传输组播数据包,通过传输组播数据包来显着增加吞吐量延迟性能网络。

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