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Signalling Cost Evaluation of Mobility Management Schemes for different Core Network Architectural Arrangements in 3GPP LTE/SAE

机译:3GPP LTE / SAE中不同核心网络架构安排的移动性管理方案的信号成本评估

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System Architecture Evolution (SAE) is one of the key challenges for the Long Term Evolution (LTE) of 3G research, charted by 3GPP, aiming to develop a new core network for improving the IP based packet-switched network performance. This paper considers different mobility management schemes for different SAE core network architectural options proposed in 3GPP, and evaluates their performance according to signalling cost by using analytical modelling based on the random walk model. Our analysis shows that the mobility management performance of the different options on both Idle and Active mode. Regarding the architecture, options 2 and 3 have the best trade-off in total signalling cost performance in both modes and signalling load on each network node for system scalability. For mobility management, Proxy MIPv6 has shown that it is able to effectively reduce the signalling cost for mobility management for all architecture options.
机译:系统架构演进(SAE)是3G研究的长期演进(LTE)的关键挑战之一,由3GPP制定,用于开发一种新的核心网络,用于提高基于IP的数据包交换网络性能。本文考虑了在3GPP中提出的不同SAE核心网络架构选项的不同移动管理方案,并根据基于随机步道模型的分析建模来评估它们的性能。我们的分析表明,怠速和活动模式下不同选项的移动性管理性能。关于架构,选项2和3在每个网络节点上的两种模式和信令负载中的总信令成本性能具有最佳权衡,以进行系统可扩展性。对于移动性管理,代理MIPv6表明它能够有效地降低所有架构选项的移动性管理的信令成本。

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