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Delay models in ethernet long-reach passive optical networks

机译:以太网长距离无源光网络中的延迟模型

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A variety of dynamic bandwidth allocation (DBA) algorithms have been proposed to foster the performance of Ethernet passive optical networks (EPONs). These DBA algorithms use packet delay as an important quality of service (QoS) metric. This has led to a significant interest in developing mathematical models for analyzing the delay. These delay models often provide valuable qualitative results and worthwhile insights in understanding the mechanism of the delay and the manner in which it depends upon algorithm characteristics. Up to now, the delay models have been developed under some approximations, e.g., fixed packet sizes, negligible distances between a server and its users, a gated bandwidth assignment method, and Poisson traffic. In this paper, we develop the delay models for more realistic scenarios than the current state-of-the-art, including gated and limited bandwidth assignment methods, Poisson and Pareto traffic, and long-reach PONs in which the distance between the server and the users is significant and hence not negligible. We model different DBA paradigms, such as REPORT after data, REPORT before data, and multi-thread polling. The results from simulation experiments confirm the accuracy of the delay models.
机译:已经提出了各种动态带宽分配(DBA)算法来增强以太网无源光网络(EPON)的性能。这些DBA算法使用数据包延迟作为重要的服务质量(QoS)指标。这引起了对开发用于分析延迟的数学模型的极大兴趣。这些延迟模型通常会提供有价值的定性结果,并在理解延迟的机理以及依赖算法特征的方式方面提供有价值的见解。迄今为止,已经在一些近似值下开发了延迟模型,例如,固定的分组大小,服务器与其用户之间的距离可忽略不计,门控带宽分配方法以及泊松流量。在本文中,我们开发了比当前最新技术更实际的情况下的延迟模型,包括门控和有限带宽分配方法,泊松和帕累托流量,以及服务器与服务器之间的距离较远的PON。用户是重要的,因此不可忽略。我们对不同的DBA范例进行建模,例如数据后的REPORT,数据前的REPORT和多线程轮询。仿真实验的结果证实了延迟模型的准确性。

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