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Call admission control for integrated on/off voice and best-effort data services in mobile cellular communications

机译:移动蜂窝通信中集成的开/关语音和尽力而为数据服务的呼叫允许控制

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摘要

This paper proposes a call admission control (CAC) policy for a cellular system supporting voice and data services, and providing a higher priority to handoff calls than to new calls. A procedure for searching the optimal admission region is given. The traffic flow is characterized by a three-dimensional (3-D) birth-death model, which captures the complex interaction between the on/off voice and best-effort data traffic sharing the total resources without partition. To reduce complexity, the 3-D model is simplified to an exact (approximate) 2-D model for voice (data). The mathematical expressions are then derived for the performance measures and for the minimal amount of resources required for quality-of-service (QoS) provisioning. Numerical results demonstrate that: 1) the proposed CAC policy performs well in terms of QoS satisfaction and resource utilization; 2) the approximate 2-D model for data traffic can achieve a high accuracy in the traffic flow characterization; and 3) the admission regions obtained by the proposed search method agree very well with those obtained by numerically solving the mathematical equations. Furthermore, computer simulation results demonstrate that the impact of lognormal distributed data file size is not significant, and may be compensated by conservatively applying the Markovian analysis results.
机译:本文提出了一种支持语音和数据服务的蜂窝系统的呼叫准入控制(CAC)策略,并为切换呼叫提供了比新呼叫更高的优先级。给出了搜索最佳准入区域的过程。流量以三维(3-D)出生-死亡模型为特征,该模型捕获了开/关语音和尽力而为数据流量之间的复杂交互,无需分割即可共享全部资源。为了降低复杂度,将3-D模型简化为语音(数据)的精确(近似)2-D模型。然后为性能度量和服务质量(QoS)设置所需的最少资源量导出数学表达式。数值结果表明:1)提出的CAC策略在QoS满意度和资源利用率方面表现良好; 2)数据流量的近似二维模型可以在流量流表征中实现高精度; 3)通过提出的搜索方法获得的进入区域与通过数值求解数学方程获得的进入区域非常吻合。此外,计算机仿真结果表明,对数正态分布数据文件大小的影响不明显,可以通过保守地应用马尔可夫分析结果来补偿。

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