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Guard-Channel-Based Incremental and Dynamic Optimization on Call Admission Control for Next-Generation QoS-Aware Heterogeneous Systems

机译:基于保护通道的下一代QoS感知异构系统呼叫准入控制的增量和动态优化

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摘要

Next-generation communication systems are expected to be highly integrated heterogeneous networking environments. Supporting multimedia services with different quality-of-service (QoS) requirements over such highly heterogeneous environments is a very challenging task, and a unified call admission control (CAC) optimization mechanism is needed to allow resources to be efficiently utilized. In this paper, we propose an optimal CAC mechanism, i.e., the guard-channel-based incremental and dynamic optimization (GUIDO), which is a threshold-based CAC scheme that is designed based on the Markov decision process (MDP) and sensitivity analysis (SA) techniques. The MDP is used to derive the optimal CAC policy for predetermined goals, whereas the use of SA can greatly reduce the effort of unnecessary recomputation of the CAC policy when the traffic condition varies. Through the use of system capacity estimation and QoS mapping techniques, GUIDO allows the CAC operation to be performed in a general framework, even with various underlying communication systems and different access/core networks. GUIDO can be implemented dynamically (online optimization) and statically (lookup table). Homogeneous and heterogeneous systems with multiple service priority classes are studied in this paper. We have considered comprehensive objective functions, and each characterizes a different interest of the service provider. The performance is evaluated via an event-driven simulator, and the results are compared with those of the complete sharing scheme and conventional guard channel schemes under constant call-arrival rates as well as time-varying call-arrival-rate traffic scenarios.
机译:下一代通信系统有望成为高度集成的异构网络环境。在如此高度异构的环境中支持具有不同服务质量(QoS)要求的多媒体服务是一项非常具有挑战性的任务,并且需要统一的呼叫准入控制(CAC)优化机制以允许有效利用资源。本文提出了一种最优的CAC机制,即基于保护通道的增量和动态优化(GUIDO),这是一种基于阈值的CAC方案,是基于马尔可夫决策过程(MDP)和敏感性分析而设计的(SA)技术。 MDP用于导出针对预定目标的最佳CAC策略,而SA的使用可以极大地减少交通状况变化时不必要地重新计算CAC策略的工作量。通过使用系统容量估计和QoS映射技术,GUIDO允许在通用框架中执行CAC操作,即使使用各种底层通信系统和不同的访问/核心网络也是如此。 GUIDO可以动态(在线优化)和静态(查找表)实现。本文研究了具有多个服务优先级类别的异构系统和异构系统。我们考虑了全面的目标功能,每个功能都代表服务提供商的不同利益。通过事件驱动模拟器评估性能,并将结果与​​恒定呼叫到达率以及时变呼叫到达率话务量情况下的完整共享方案和常规保护信道方案的结果进行比较。

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