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A Novel EPON Architecture for Supporting Direct Communication Between ONUs

机译:支持ONU之间直接通信的新型EPON架构

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In the traditional EPON network, optical signal from one ONU can not reach other ONUs. So ONUs can not directly transmit packets to other ONUs .The packets must be transferred by the OLT and it consumes both upstream bandwidth and downstream bandwidth. The bandwidth utilization is low and becomes lower when there are more packets among ONUs. When the EPON network carries P2P (Peer-to-Peer) applications and VPN applications, there would be a great lot of packets among ONUs and the traditional EPON network meets the problem of low bandwidth utilization. In the worst situation the bandwidth utilization of traditional EPON only is 50 percent. This paper proposed a novel EPON architecture and a novel medium access control protocol to realize direct packets transmission between ONUs. In the proposed EPON we adopt a novel circled architecture in the splitter. Due to the circled-splitter, optical signals from an ONU can reach the other ONUs and packets could be directly transmitted between two ONUs. The traffic between two ONUs only consumes upstream bandwidth and the bandwidth cost is reduced by 50 percent. Moreover, this kind of directly transmission reduces the packet's latency.
机译:在传统的EPON网络中,来自一个ONU的光信号无法到达其他ONU。因此ONU不能直接向其他ONU发送数据包,这些数据包必须由OLT传输,并且会占用上行带宽和下行带宽。带宽利用率低,并且在ONU之间有更多数据包时,带宽利用率会降低。当EPON网络承载P2P(Peer-to-Peer)应用和VPN应用时,ONU之间会有大量的报文,传统的EPON网络存在带宽利用率低的问题。在最坏的情况下,传统EPON的带宽利用率仅为50%。本文提出了一种新颖的EPON架构和一种新颖的媒体访问控制协议,以实现ONU之间的直接报文传输。在提出的EPON中,我们在分离器中采用了一种新颖的圆形架构。由于采用了圆形分路器,来自ONU的光信号可以到达其他ONU,并且可以在两个ONU之间直接传输数据包。两个ONU之间的流量仅消耗上行带宽,带宽成本降低了50%。而且,这种直接传输减少了数据包的等待时间。

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