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首页> 外文期刊>IEEE Journal on Selected Areas in Communications >Analysis of a discrete-time single-server queue with bursty inputs for traffic control in ATM networks
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Analysis of a discrete-time single-server queue with bursty inputs for traffic control in ATM networks

机译:具有突发输入的离散时间单服务器队列分析,用于ATM网络中的流量控制

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摘要

The performance of an asynchronous transfer mode (ATM) network subject to admission control and traffic smoothing is analyzed. Basically, an ATM switch is modeled as a discrete-time single-server queuing system in which a new call joins existing calls. Cell arrivals from a new call are assumed to follow a general distribution. It is also assumed that aggregated arrivals of cells from existing calls form batch arrivals with a general batch size distribution and a geometric distribution of the interarrival times between batches. Both finite- and infinite-buffer cases are considered. An exact analysis yields the waiting time distribution and cell loss probability for a new call and for existing calls. Numerical examples are given to show how the network performance depends on the statistics of a new call (burstiness, time that a call stays in an active or inactive state, etc.) and to demonstrate the effectiveness of admission control and traffic smoothing.
机译:分析了接受许可控制和流量平滑的异步传输模式(ATM)网络的性能。基本上,ATM交换机被建模为离散时间单服务器排队系统,其中新呼叫加入了现有呼叫。假设来自新呼叫的小区到达遵循一般分布。还假定来自现有呼叫的信元聚合到达形成具有一般批次大小分布和批次之间到达时间的几何分布的批次到达。同时考虑了有限缓冲和无限缓冲两种情况。精确的分析得出新呼叫和现有呼叫的等待时间分布和信元丢失概率。给出了一些数字示例,以显示网络性能如何取决于新呼叫的统计信息(突发性,呼叫保持活动状态或不活动状态的时间等),并演示了准入控制和流量平滑的有效性。

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