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Cross-layer radio resource management in integrated WWAN and WLAN networks

机译:集成WWAN和WLAN网络中的跨层无线电资源管理

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This paper proposes a mobility adaptive network selection scheme in the context of wireless wide area network (WWAN) and wireless local area network (WLAN) radio access technologies (RATs) that supports both real-time (RT) and non-real-time (NRT) service classes. Physical layer information based call admission control (CAC) is considered for the two RATs to enforce service specific QoS requirements. The effectiveness of the cross-protocol-layer information for radio resource management (RRM) in integrated WWAN and WLAN networks is assessed analytically for individual service classes in a multi-service environment using the theory of Markov chains. The impact of non-uniform user and mobility distributions due to the existence of hotspot in the macro-cell area and the effect of network selection parameter measurement errors on the RRM performance are also evaluated. Numerical results show that the proposed network selection scheme minimizes the rate of unnecessary vertical handoffs, thereby providing stable communication without degrading the call blocking probability and call outage probability performance metrics.
机译:本文提出了一种在无线广域网(WWAN)和无线局域网(WLAN)无线电接入技术(RAT)的情况下支持实时(RT)和非实时( NRT)服务类。为两个RAT考虑基于物理层信息的呼叫允许控制(CAC),以实施特定于服务的QoS要求。使用马尔可夫链理论,针对多服务环境中的单个服务类别,分析地评估了集成WWAN和WLAN网络中跨协议层信息对无线资源管理(RRM)的有效性。还评估了由于宏小区区域中热点的存在而导致的用户和移动性分布不均匀的影响,以及网络选择参数测量误差对RRM性能的影响。数值结果表明,所提出的网络选择方案使不必要的垂直越区切换的速率最小化,从而提供稳定的通信,而不会降低呼叫阻塞概率和呼叫中断概率性能指标。

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