Join call admission control algorithm to enhance connection-level QoS in heterogeneous cellular networks

O. Falowo, H. Chan
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引用次数: 3

Abstract

Next generation wireless networks will be heterogeneous where different radio access technologies (RATs) coexist. This coexistence of different RATs necessitates joint radio resource management. This paper proposes a joint call admission control (JCAC) algorithm for heterogeneous cellular networks and develop an analytical model for the JCAC. The cellular networks are integrated together and radio resources are jointly managed to support multiple classes of service. We decompose the integrated cellular networks into groups of co-located cells. In each group of co-located cells, the objectives of the JCAC algorithm are to uniformly distribute traffic load among the available RATs, prioritized handoff calls over new calls, and enhance connection-level QoS. Prioritization of handoff calls over new calls is achieved by using threshold-based bandwidth reservation method. The JCAC algorithm is modeled as a multi-dimensional Markov chain. We derive two connection-level QoS metrics, new call blocking probability and handoff call dropping probability, for the heterogeneous cellular network and then evaluate the performance of the JCAC algorithm through simulations. Results show that connection-level QoS can be significantly increased by using the JCAC algorithm in heterogeneous cellular networks.
加入呼叫接纳控制算法,提高异构蜂窝网络的连接级QoS
下一代无线网络将是异构的,不同的无线接入技术(rat)共存。不同rat的共存需要联合无线电资源管理。提出了一种异构蜂窝网络的联合呼叫接纳控制(JCAC)算法,并建立了JCAC的分析模型。蜂窝网络被集成在一起,无线电资源被联合管理以支持多个业务类别。我们将集成的蜂窝网络分解为一组位于同一位置的蜂窝。在每一组共定位单元中,JCAC算法的目标是在可用的rat之间统一分配流量负载,将切换呼叫优先于新呼叫,并增强连接级QoS。采用基于阈值的带宽保留方法实现切换呼叫对新呼叫的优先级。JCAC算法被建模为一个多维马尔可夫链。本文推导了异构蜂窝网络的两个连接级QoS指标,即新呼叫阻塞概率和切换呼叫丢弃概率,并通过仿真对JCAC算法的性能进行了评价。结果表明,在异构蜂窝网络中使用JCAC算法可以显著提高连接级QoS。
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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