THE PROBLEM OF GENERATING PSEUDORANDOM SEQUENCES OF COMPOSITE DISTRIBUTIONS FOR QS SIMULATION

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Abstract

This article presents the results obtained on developing a pseudo-random sequence generator for simulation modeling of a QS with a hyper-Erlangian input distribution of the second order. In foreign and Russian-language scientific literature, including web resources, data on this domain were not found by the authors. It is known that this distribution law is the most general distribution of a continuous nonnegative random variable within a wide range of variation coefficients. The latter plays an important role in estimating a delay of requests in a queue in queuing systems, since an average delay of requests in a queue is related to the coefficients of variation of arrival and service intervals via the quadratic dependence. Using this higher order distribution is difficult to derive a solution for an average waiting time due to the increasing computational complexity. For the hyper-Erlangian distribution law of the second order, the authors previously obtained some numeric and analytic results based on the method of spectral solution to the Lindley's integral equation. The article presents the obtained algorithm and program on GPSS WORLD for simulating the functioning of a QS with a hyper-Erlangian input distribution. The adequacy of the obtained results was confirmed by comparing the simulation results with the results of numerical simulation in the Mathcad environment. The authors hope that the presented results will be in demand by specialists in the field of simulation modeling in the GPSS WORLD environment.
qs模拟中复合分布伪随机序列的生成问题
本文介绍了用伪随机序列发生器对二阶超埃尔朗日输入分布的QS进行仿真建模的结果。在外文和俄文科学文献中,包括网络资源,作者未发现该领域的数据。已知该分布规律是连续非负随机变量在较宽变异系数范围内的最一般分布。由于队列中请求的平均延迟通过二次依赖关系与到达间隔和服务间隔的变化系数相关,因此后者在估计队列中请求的延迟中起着重要作用。由于计算复杂度的增加,使用这种高阶分布很难得到平均等待时间的解。对于二阶超埃尔朗根分布规律,作者先前利用林德利积分方程的谱解法得到了一些数值和解析结果。本文给出了在GPSS WORLD上模拟具有超埃尔朗输入分布的QS功能的算法和程序。通过将仿真结果与Mathcad环境下的数值模拟结果进行比较,证实了所得结果的充分性。作者希望所提出的结果将被GPSS WORLD环境中仿真建模领域的专家所需要。
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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