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Analysis of a rate-based access control mechanism for high-speed networks

机译:高速网络中基于速率的访问控制机制的分析

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摘要

The authors present an analysis of a rate-based access control mechanism for high-speed networks that is based on the buffered leaky bucket scheme. The analysis assumes a discrete time environment representative of asynchronous transfer mode (ATM) networks and a batch arrival process that captures cell arrivals generated by segmentation of large user packets or superposition of a number of arrival streams. The solution method is based on matrix analytic techniques, but the particular structure of the system allowed for a number of important improvements. It is shown that the problem can be partitioned and that the matrix G, central to the matrix analytic technique, can be computed using exact recursive procedures instead of the traditional iterative approach. These improvements not only extend the range of systems that can be handled, but also eliminate computational issues such as convergence rate and stopping criterion.
机译:作者介绍了基于缓冲漏斗方案的基于速率的高速网络访问控制机制的分析。该分析假设一个代表异步传输模式(ATM)网络的离散时间环境,以及一个批量到达过程,该过程捕获由大用户数据包的分段或大量到达流的叠加生成的信元到达。解决方法基于矩阵分析技术,但是系统的特定结构允许进行许多重要的改进。结果表明,可以对问题进行分区,并且可以使用精确的递归过程而不是传统的迭代方法来计算矩阵G(矩阵分析技术的核心)。这些改进不仅扩展了可以处理的系统范围,而且消除了诸如收敛速度和停止准则之类的计算问题。

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