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Link quality-aware call admission strategy for mobile cellular networks with link adaptation

机译:具有链路自适应的移动蜂窝网络的链路质量感知呼叫接纳策略

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In this paper, the performance of mobile cellular systems with link adaptation (LA) is analytically evaluated. Half- and full-rate vocoders are considered in the analysis. Mathematical expressions for the new call blocking, handoff failure, and forced termination probabilities are obtained. To our knowledge, no similar analysis considering LA exists in the literature. Also, the link quality-aware dual fractional channel reservation (LQA DFCR) scheme is proposed. In LQA DFCR, user differentiation is implemented in terms of link quality. Preference is given to users with good link quality because they require fewer resources than users with bad link quality. Numerical results show that the proposed LQA DFCR scheme effectively increases system capacity: LQA DFCR achieves more than a 11% capacity gain relative to systems with the non priority scheme (NPS) and with LA, and approximately 3% relative to the fair access prioritisation scheme (FAPS) strategy. Numerical results also show that LA yields an approximately 18% capacity increase relative to a cellular system without LA when no admission control is employed (admission control strategies further increase system capacity.) The synergy between LA and admission control strategies yields more than a 31% capacity gain
机译:在本文中,通过链接评估(LA)评估了移动蜂窝系统的性能。分析中考虑了半速率和全速率声码器。获得新呼叫阻塞,切换失败和强制终止概率的数学表达式。据我们所知,文献中没有关于LA的类似分析。此外,提出了链路质量感知双分数信道预留(LQA DFCR)方案。在LQA DFCR中,根据链路质量实现用户区分。优先选择链接质量较好的用户,因为与链接质量较差的用户相比,他们需要的资源更少。数值结果表明,所提出的LQA DFCR方案有效地提高了系统容量:相对于具有非优先级方案(NPS)和LA的系统,LQA DFCR可获得超过11%的容量增益,而相对于公平访问优先级分配方案,则约为3% (FAPS)策略。数值结果还显示,当不采用接纳控制时,相对于没有LA的蜂窝系统,LA的容量增加约18%(接纳控制策略进一步提高了系统容量。)LA和接纳控制策略之间的协同作用产生了31%以上的协同作用容量增加

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