Asymmetry analysis of discrete-time periodic query double-queue threshold control system

Dedu Yin, Man Cheng, Xinchun Wang
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Abstract

According to the operation mechanism and characteristics of the asymmetric polling system in token ring network, the physical structure model of the system under the asymmetric double-queues threshold control strategy is established. Under the condition of defining the system state variables and parameters, the mathematical model describing the asymmetric double-queues threshold control policy was abstracted. The discrete time Markov chain and an important analytical tool for studying the distribution pattern of random variables were used as the analysis method and means. The performance indexes of the asymmetric double-queues threshold service control system are studied effectively, the average queuing length and the average cycle length of the system are analyzed precisely, the six second-order characteristic expressions of the system are analyzed completely, and the average waiting delay equation of the system is analyzed optimally. The results of simulation experiment and theoretical numerical calculation are in good agreement. This study presents a further understanding of the internal law of asymmetry problem in the double-queues threshold control policy so as to create the study basis and conditions for the research of asymmetric multi-queues threshold control strategy.

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离散时间周期查询双队列门限控制系统的非对称性分析
根据令牌环网络中非对称轮询系统的运行机制和特点,建立了非对称双队列门限控制策略下系统的物理结构模型。在确定系统状态变量和参数的条件下,抽象了描述非对称双队列门限控制策略的数学模型。采用离散时间马尔可夫链和研究随机变量分布模式的重要分析工具作为分析方法和手段。有效地研究了非对称双队列阈值服务控制系统的性能指标,精确地分析了系统的平均排队长度和平均周期长度,完整地分析了系统的6个二阶特征表达式,最优地分析了系统的平均等待延迟方程。仿真实验结果与理论数值计算结果吻合较好。本研究进一步认识了双队列门限控制策略中不对称问题的内在规律,为非对称多队列门限控制策略的研究创造了研究基础和条件。
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