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Performance and stability analysis of buffered slotted ALOHA protocols using tagged user approach

机译:使用标记用户方法的缓冲时隙式ALOHA协议的性能和稳定性分析

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摘要

This paper presents a new approximation approach to analyze slotted ALOHA (S-ALOHA) systems with finite user population having either finite or infinite user buffer capacity. By assuming a symmetric channel, the performance analysis of the overall system is determined by the performance of an arbitrarily selected user, called the tagged user. The service time distribution for the tagged user buffer is found using a state flow graph. This distribution is then applied to the queueing analysis of the tagged user using available classical queueing theory results. The proposed approach can be applied to analysis of systems with a very large user population and user buffer capacity. The distributions and mean values of the important performance indices such as waiting time, queue size, and interdeparture time are obtained. The stability of the system with infinite buffer capacity is also studied. The region of transmission probability p in which the system is always stable and has best performance is obtained. Though the system with finite buffer capacity is considered to be always stable, a comprehensive analysis of the equilibrium points in the system is presented. The analysis presented will allow a proper choice of transmission probability so that the system always operates at the desired equilibrium point.
机译:本文提出了一种新的近似方法,用于分析具有有限或无限用户缓冲区容量的有限用户群的时隙ALOHA(S-ALOHA)系统。通过假设一个对称信道,整个系统的性能分析将由任意选择的用户(称为标记用户)的性能来确定。使用状态流程图找到带标签的用户缓冲区的服务时间分布。然后使用可用的经典排队理论结果将此分布应用于带标签的用户的排队分析。所提出的方法可以用于分析具有很大用户群和​​用户缓冲区容量的系统。获得重要性能指标的分布和平均值,例如等待时间,队列大小和出发时间。还研究了具有无限缓冲能力的系统的稳定性。获得了系统总是稳定且具有最佳性能的传输概率区域p。尽管认为具有有限缓冲能力的系统总是稳定的,但仍对系统中的平衡点进行了综合分析。提出的分析将允许适当选择传输概率,以使系统始终在所需的平衡点运行。

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