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Multimedia call admission control in mobile networks: a dynamical reservation-pool approach

机译:移动网络中的多媒体呼叫准入控制:动态预留池方法

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摘要

The effective delivery of Multimedia traffic in next generation mobile cellular communication environment will become an increasingly important issue as cell sizes shrink to accommodate continuously large demand for high capacity. To provide the guaranteed mobile QoS for arriving multi-class calls, we should not only consider the regular latency requirement, but also minimize the dropping rate of handoff calls while at the same time controlling the blocking rate of new calls. In this paper, a new multi-class call admission control mechanism is proposed that is based on dynamically forming a reservation-pool for handoff requests. The prerequisite of this scheme is that wireless components can estimate future trajectory of mobile hosts with high degree of accuracy, which is possible in today's increasingly improved position location techniques such as GPS. In this work, we first develop the notion of servicing various multi-class connections based on priority determined using the combined analysis of mobile movement information and the desired QoS requirements of multimedia traffic. We also provide a practical framework for determining the occurrence time of handoff request reservations. For our simulation experiments, three kinds of timers are introduced for controlling the progress of discrete events. The simulation results show that the individual QoS criteria of multi-class traffic such as the handoff call dropping probability can be achieved within a targeted objective and the new call blocking probability is constrained to be below a given level. The proposed scheme is applicable to channel allocation of multi-class calls over high-speed multimedia wireless ATM networks.
机译:随着蜂窝尺寸的缩小,以适应对大容量的持续大量需求,在下一代移动蜂窝通信环境中有效传输多媒体流量将变得越来越重要。为了为到达的多类呼叫提供有保证的移动QoS,我们不仅应考虑常规的等待时间要求,而且还应最小化切换呼叫的丢失率,同时控制新呼叫的阻塞率。本文提出了一种新的多类呼叫接纳控制机制,该机制基于动态形成切换请求的预留池。该方案的先决条件是无线组件可以高精度地估计移动主机的未来轨迹,这在当今日益完善的定位技术(例如GPS)中是可能的。在这项工作中,我们首先根据使用移动运动信息和多媒体流量的QoS要求的组合确定的优先级来开发服务各种多类连接的概念。我们还提供了一个确定切换请求保留发生时间的实用框架。对于我们的仿真实验,引入了三种计时器来控制离散事件的进度。仿真结果表明,可以在目标目标内实现多类业务的各个QoS标准,如切换呼叫掉话概率,并且将新的呼叫阻塞概率限制在给定水平以下。所提出的方案适用于高速多媒体无线ATM网络上多类呼叫的信道分配。

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