Dynamic threshold-based call admission framework for prioritized multimedia traffic in wireless cellular networks

N. Nasser, H. Hassanein
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引用次数: 27

Abstract

Next generation wireless cellular networks aim at supporting wireless multimedia services with different classes of traffic that are characterized by diverse quality of service (QoS) and bandwidth requirements. They will use micro/picocellular architectures in order to provide higher capacity. However, small-size cells increase the handoff rate drastically. As a result, it is a challenge to provide stable QoS in these networks. In this paper, we present a novel dynamic call admission control (DyCAC) framework for next generation wireless cellular networks. The framework consists of the following components: (i) a threshold-based bandwidth reservation policy; (ii) a threshold update processing module; and (iii) an admission controller module. In this work, each base station locally, independently of other base stations in the network, differentiates between new and handoff calls for each class of traffic by assigning a threshold to each class according to its QoS requirements. The threshold values change dynamically and periodically in order to respond to the varying traffic conditions. The main feature of the proposed framework is its ability to simultaneously achieve several design goals. Numerical results show that our proposed DyCAC framework can guarantee the connection-level quality of service of individual traffic classes while maximizing resource utilization. As well, DyCAC requires low communication overhead, and is highly scalable.
基于动态阈值的无线蜂窝网络中优先级多媒体业务的呼叫接纳框架
下一代无线蜂窝网络旨在支持具有不同业务类别的无线多媒体业务,这些业务具有不同的服务质量(QoS)和带宽要求。为了提供更高的容量,他们将使用微/微蜂窝架构。然而,小尺寸的单元大大增加了切换率。因此,在这些网络中提供稳定的QoS是一个挑战。本文提出了一种用于下一代无线蜂窝网络的动态呼叫接纳控制(DyCAC)框架。该框架由以下部分组成:(i)基于阈值的带宽保留策略;(ii)阈值更新处理模块;(iii)接纳控制器模块。在这项工作中,每个基站在本地独立于网络中的其他基站,通过根据其QoS要求为每一类流量分配一个阈值来区分每一类流量的新呼叫和切换呼叫。为了响应不同的流量条件,阈值会动态地、周期性地变化。该框架的主要特点是能够同时实现多个设计目标。数值结果表明,所提出的DyCAC框架在保证单个流量类的连接级服务质量的同时,又能最大限度地提高资源利用率。此外,DyCAC需要较低的通信开销,并且具有高度可扩展性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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