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A dynamic access class barring scheme to balance massive access requests among base stations over the cellular M2M networks

机译:一种动态访问类别限制方案,用于平衡蜂窝M2M网络上基站之间的大量访问请求

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Cellular based M2M systems generate massive number of access requests which create congestion in the cellular network. The contention-based random access procedures are designed for cellular networks which cannot accommodate a large number of M2M traffic. In this paper, a contention-based slotted Aloha random access procedure for M2M network is first analyzed using different performance metrics. The impact of massive M2M traffic over cellular traffic is studied based on different arrival rate, random access opportunity and throughput. Then, an analytical model of selecting a base station (eNB) along with load balancing is developed. Finally, a dynamic access class barring method and RAN level congestion control mechanism by selecting the appropriate eNB is presented and evaluated with M2M traffic.
机译:基于蜂窝的M2M系统生成大量的访问请求,这会在蜂窝网络中造成拥塞。基于竞争的随机访问过程是为无法容纳大量M2M流量的蜂窝网络设计的。在本文中,首先使用不同的性能指标分析了基于竞争的M2M网络时隙Aloha随机访问过程。基于不同的到达率,随机访问机会和吞吐量来研究大量M2M流量对蜂窝流量的影响。然后,开发了选择基站(eNB)以及负载均衡的分析模型。最后,提出了一种通过选择合适的eNB的动态接入类别限制方法和RAN级拥塞控制机制,并对其进行了M2M流量评估。

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