首页> 外文会议>Global Telecommunications Conference, 2004. GLOBECOM '04. IEEE >Call admission control for multi-service mobile networks with bandwidth asymmetry between uplink and downlink
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Call admission control for multi-service mobile networks with bandwidth asymmetry between uplink and downlink

机译:上行链路和下行链路之间带宽不对称的多业务移动网络的呼叫接纳控制

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In multi-service mobile networks, asymmetric bandwidth allocation has been proposed to satisfy the requirements of the asymmetric traffic load introduced by some data applications. However, it is difficult to promptly adjust bandwidth allocation on the uplink and downlink according to the traffic load dynamics. Superfluous real-time (RT) calls or non-real-time (NRT) calls might be accepted. This may lead to a low bandwidth utilization. In this paper, we propose and evaluate a new call admission control (CAC) scheme to address the problems caused by the mismatch of bandwidth allocation and traffic changes. By determining the admissible bandwidth region for the NRT calls, the proposed scheme prevents the calls from overusing the bandwidth resources. Thus the bandwidth utilization is improved and the blocking probability of the high priority calls can be guaranteed at a low level. The simulation results demonstrate that the proposed CAC scheme can achieve better performance compared to the existing schemes, even those performing well in multi-service mobile networks with asymmetric bandwidth allocation.
机译:在多服务移动网络中,已经提出了不对称带宽分配来满足一些数据应用引入的非对称业务负载的要求。然而,难以根据流量负载动态立即在上行链路和下行链路上调整带宽分配。可能会接受多余的实时(RT)呼叫或非实时(NRT)呼叫。这可能导致带宽利用率低。在本文中,我们提出并评估了新的呼叫准入控制(CAC)方案,以解决带宽分配和流量变化不匹配引起的问题。通过确定NRT呼叫的可允许带宽区域,所提出的方案可防止呼叫过度使用带宽资源。因此,提高带宽利用率,并且可以在低电平下保证高优先级呼叫的阻塞概率。仿真结果表明,与现有方案相比,所提出的CAC方案可以实现更好的性能,即使在具有不对称带宽分配的多服务移动网络中表现良好的那些。

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