A theory of traffic-measurement errors for loss systems with renewal input

S. Neal, A. Kuczura
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引用次数: 18

Abstract

A theory of traffic-measurement errors for loss systems with renewal input is developed. The results provide an accurate approximation for the variance of any differentiable function of one or more of the following basic traffic measurements taken during a given time interval: (i) The total number of attempts (peg count) (ii) The number of unsuccessful attempts (overflow count) (iii) The usage based on discrete samples (TUR measurement) or on continuous scan. The approximation is given in terms of the individual variances and covariance functions of the three measurements. Asymptotic approximations for these moments are obtained using the concept of a generalized renewal process, and are shown to be sufficiently accurate for telephone traffic-engineering purposes. As an application of the theory, we examine the variances of the standard estimates of the load and peakedness (variance-to-mean ratio) of an input traffic stream for a time interval of one hour. Other possible applications to Bell System trunking problems are discussed.
具有更新输入的损失系统流量测量误差理论
提出了一种具有更新输入的损耗系统流量测量误差理论。结果为在给定时间间隔内采取的以下一个或多个基本流量测量的任何可微函数的方差提供了准确的近似:(i)尝试总数(peg计数)(ii)不成功尝试的数量(溢出计数)(iii)基于离散样本(TUR测量)或连续扫描的使用情况。近似是根据三个测量的个体方差和协方差函数给出的。这些矩的渐近近似是使用广义更新过程的概念得到的,并且被证明是足够精确的电话流量工程目的。作为该理论的一个应用,我们在一小时的时间间隔内检查了输入流量流的负载和峰值(方差均值比)的标准估计的方差。讨论了贝尔系统集群问题的其他可能应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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