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A Joint-ONU Interval-Based Dynamic Scheduling Algorithm for Ethernet Passive Optical Networks

机译:以太网无源光网络中基于联合ONU间隔的动态调度算法

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This paper proposes a new dynamic bandwidth allocation system for Ethernet Passive Optical Networks (EPONs), subject to requirements of fairness, efficiency, and cost. An Optical Line Terminal (OLT)-centric bandwidth allocation model is proposed which employs a credit pooling technique combined with a weighted-share policy to partition the upstream bandwidth among different classes of service, and to prevent Optical Network Units (ONUs) from monopolizing the bandwidth. The OLT-centric model allows global optimization of network resources, a characteristic which is not found in many earlier proposals. Supported by the new bandwidth allocation, the paper proposes a joint-ONU interval-based packet scheduling algorithm, referred to herein as COPS (Class-of-service Oriented Packet Scheduling), that meets the requirements set out above. We compare COPS with another well-known scheduling algorithm which employed a standard priority-based bandwidth sharing. We show that COPS is superior in terms of network utilization and maximum packet delay, with the consequence of an increase in average packet delay for the premium traffic. This drawback is overcome by combining COPS with a rate-based optimization scheme.
机译:本文提出了一种新的针对以太网无源光网络(EPON)的动态带宽分配系统,但要满足公平性,效率和成本的要求。提出了一种以光缆终端(OLT)为中心的带宽分配模型,该模型采用信用池技术和加权共享策略在不同的服务类别之间划分上行带宽,并防止光网络单元(ONU)独占带宽。带宽。以OLT为中心的模型允许对网络资源进行全局优化,这是许多早期建议中所没有的特性。在新的带宽分配的支持下,本文提出了一种基于ONU间隔的联合分组调度算法,在本文中称为COPS(面向服务等级的分组调度),可以满足上述要求。我们将COPS与采用标准基于优先级的带宽共享的另一种知名调度算法进行了比较。我们显示,COPS在网络利用率和最大数据包延迟方面表现优异,其结果是优质流量的平均数据包延迟增加。通过将COPS与基于速率的优化方案结合可以克服此缺点。

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