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Using GSPNs for Performance Analysis of a New Admission Control Strategy with Retrials and Guard Channels

机译:使用GSPN进行再审和保护渠道的新录取控制策略的性能分析

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The Small Cell Networks (SCNs) based on the idea of employing much smaller size cells cause the mobile subscribers to cross several cells during an ongoing conversation resulting in frequent handovers. Most of works dealing with Call Admission Control (CAC) problems based on guard channels scheme in cellular mobile networks, consider models without retrials (repeated calls). On the other hand, almost all existing works which take into account retrial phenomenon, consider a multi-servers retrial queueing model for which the analytical solution is not available. In this paper, we propose to use the Generalized Stochastic Petri Nets (GSPNs) formalism as a novel alternative for modeling and evaluating performances of a new CAC strategy with retrial policy of fresh and handover calls generated by a finite source of subscribers, based on prioritization of retrial calls and adopting a guard channels borrowing concept, operating in SCNs. A performance study shows that our approach is more efficient compared to basic guard channel scheme with better blocking probability, especially for low to medium handover calls rates.
机译:基于采用更小的尺寸小区的想法的小单元网络(SCNS)导致移动用户在持续的谈话期间交叉几个小区,从而导致频繁的切换。根据蜂窝移动网络中的保护频道方案,大多数处理呼叫录取控制(CAC)问题,考虑没有重审的模型(重复呼叫)。另一方面,几乎所有现有的作品都考虑了检查现象,考虑了一个多服务器重审队列型号,用于其中不可用的分析解决方案。在本文中,我们建议使用广义随机Petri网(GSPNS)形式主义作为一种新的替代品,用于根据优先级排序,通过由有限的订户产生的新鲜和切换呼叫的再审政策进行建模和评估新的CAC策略的性能重新调用和采用借阅概念的护卫频道,在SCNS上运行。绩效研究表明,与具有更好阻塞概率的基本保护通道方案相比,我们的方法更有效,特别是对于低至中等切换呼叫率。

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