以太网无源光网络周期需求比例性研究

S. Krijestorac, J. Bagby
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摘要

高速网络通信的进步提高了通过以太网无源光网络(epon)提供高要求多媒体和数据服务的门槛。epon成本相对较低,已成为可靠地提供语音、视频和数据通信等基本服务的有吸引力的解决方案,同时根据已定义的服务质量措施提供这些服务交付的预期保证。EPON研究的一个持续主题是高效动态带宽分配(DBA)的研究,它是实现远程网络单元之间公平分配带宽的关键因素。在我们的研究中,我们探讨了另一个因素及其影响网络性能和服务交付:周期需求比例(CDP)。通过一个又一个周期地观察网络中单个网络单元的需求模式,我们可以推断出某些单元相对于其他单元的负载特性。然后,我们可以根据这个因素来决定后续的补助金分配,并力求在此过程中取得更好的结果。我们模拟了不同负载下的epon,并将CDP的使用与当前使用的DBA方案结合起来。本文给出了循环轮询DBA方案在轻负载环境下延迟性能的改进结果
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Investigating cycle demand proportionality in Ethernet passive optical networks
Advances in high speed network communications have raised the bar of delivering demanding multimedia and data services through Ethernet passive optical networks (EPONs). At their relatively low cost, EPONs have become an attractive solution to providing essential services like voice, video, and data communications reliably, while at the same time providing expected guarantees of the delivery of those services in terms of defined quality of service measures. A continuous theme throughout EPON research has been the study of efficient dynamic bandwidth allocation (DBA) as a key factor in achieving fairness in distributing bandwidth amongst remote network units. In our research, we investigate another factor and its effect of network performance and service delivery: cycle demand proportionality (CDP). By observing the patterns of demand in the network on an individual network unit basis cycle after cycle, we can deduce load characteristics of some units over others. We can then make decisions about subsequent grant allocations based on this factor and aim to achieve better results in the process. We simulate EPONs under varying loads and incorporate the use of CDP in conjunction with currently used DBA schemes. In this paper we present results of achieving improvements in delay performance under light-load circumstances for the cyclic polling DBA scheme
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