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A distributed database architecture for global roaming in next-generation mobile networks

机译:用于下一代移动网络中全球漫游的分布式数据库体系结构

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The next-generation mobile network will support terminal mobility, personal mobility, and service provider portability, making global roaming seamless. A location-independent personal telecommunication number (PTN) scheme is conducive to implementing such a global mobile system. However, the nongeographic PTNs coupled with the anticipated large number of mobile users in future mobile networks may introduce very large centralized databases. This necessitates research into the design and performance of high-throughput database technologies used in mobile systems to ensure that future systems will be able to carry efficiently the anticipated loads. This paper proposes a scalable, robust, efficient location database architecture based on the location-independent PTNs. The proposed multitree database architecture consists of a number of database subsystems, each of which is a three-level tree structure and is connected to the others only through its root. By exploiting the localized nature of calling and mobility patterns, the proposed architecture effectively reduces the database loads as well as the signaling traffic incurred by the location registration and call delivery procedures. In addition, two memory-resident database indices, memory-resident direct file and T-tree, are proposed for the location databases to further improve their throughput. Analysis model and numerical results are presented to evaluate the efficiency of the proposed database architecture. Results have revealed that the proposed database architecture for location management can effectively support the anticipated high user density in the future mobile networks.
机译:下一代移动网络将支持终端移动性,个人移动性和服务提供商的可移植性,从而实现全球漫游的无缝性。位置无关的个人电信号码(PTN)方案有助于实现这样的全球移动系统。但是,非地理PTN加上未来移动网络中预期的大量移动用户可能会引入非常大的集中式数据库。这就需要对移动系统中使用的高吞吐量数据库技术的设计和性能进行研究,以确保将来的系统将能够有效地承载预期的负载。本文提出了一种基于位置无关的PTN的可扩展,健壮,高效的位置数据库体系结构。提出的多树数据库体系结构由许多数据库子系统组成,每个子系统都是三级树结构,并且仅通过其根与其他子系统连接。通过利用呼叫和移动性模式的本地化性质,所提出的体系结构有效地减少了数据库负载以及位置注册和呼叫传递过程所引起的信令流量。此外,为位置数据库提出了两个驻留内存的数据库索引,即驻留内存的直接文件和T树,以进一步提高其吞吐量。提出了分析模型和数值结果来评估所提出的数据库体系结构的效率。结果表明,提出的用于位置管理的数据库体系结构可以有效地支持未来移动网络中预期的高用户密度。

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