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Performance Modeling of Cellular Systems with Finite Processor Sharing Queues in Random Environment, Guard Policy and Flex Retrial Users

机译:随机环境,保护策略和Flex重试用户中具有有限处理器共享队列的蜂窝系统的性能建模

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We investigate a two-station retrial queueing system to model the access in modern cellular networks managed by two service providers. Each provider owns a single access point, which operates under processor sharing discipline, and accepts three types of users: the handover users and, the originating subscribers and the originating flex users. At the arrival epoch, a flex user connects with the provider, which offers the largest data rate. Each access point can admit a limited number of users and employ a guard bandwidth policy in order to prioritize the handover users. Both blocked handover and originating subscriber users are lost. Blocked flex users join a virtual orbit queue of infinite capacity from where they retry independently to connect with the service provider that offers the largest data rate at their retrial time. Moreover, the system operates in varying environmental conditions. Using the matrix analytic formalism we construct a four-dimensional Markovian model, which allows to represent accurately the types of user behavior and the environmental aspects in cellular networks. We perform a steady-state analysis and a study of the main performance metrics.
机译:我们研究了一个两站式重试排队系统,以对由两个服务提供商管理的现代蜂窝网络中的访问进行建模。每个提供商都拥有一个单独的访问点,该访问点在处理器共享原则下运行,并接受三种类型的用户:切换用户,原始订户和原始伸缩用户。在到达时代,弹性用户与提供最大数据速率的提供商进行连接。每个接入点可以接纳有限数量的用户,并采用保护带宽策略,以便对切换用户进行优先级排序。阻塞的切换和原始订户用户都将丢失。被阻止的flex用户加入无限容量的虚拟轨道队列,从那里他们独立地重试,以与在重试时提供最大数据速率的服务提供商进行连接。而且,该系统在变化的环境条件下运行。使用矩阵分析形式主义,我们构建了一个二维马尔可夫模型,该模型可以准确地表示蜂窝网络中用户行为的类型和环境方面。我们执行稳态分析并研究主要性能指标。

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