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Mobility modeling in third-generation mobile telecommunications systems

机译:第三代移动通信系统中的移动性建模

摘要

In mobile communications, mobility modeling is involved in several aspects related to signaling and traffic load analysis. In third-generation systems, the influence of mobility on the network performance (e.g., handover rate) will be strengthened, mainly due to the huge number of mobile users in conjunction with the small cell size. In particular, the accuracy of mobility models becomes essential for the evaluation of system design alternatives and network implementation cost issues. In this article the authors propose three basic types of mobility models, which are appropriate for the analysis of the full range of mobile communications' design issues. The models provide different levels of detail regarding the user mobility behavior. In particular, a) the City Area Model traces user motion at an area zone level, b) the Area Zone Model considers users moving on a street network, and c) the Street Unit Model tracks user motion with an accuracy of a few meters. The validity of the basic models for mobile communications design aspects is highlighted. Moreover, an ''integrated mobility modeling tool'' which considers the basic mobility models as components is proposed, aiming at the development of a refined modeling approach. This is achieved by improving the accuracy of the input parameters of each basic model via the exchange of some specific (mobility-related) parameters among the component models. To justify the applicability of the proposed integrated tool for both the analysis of design aspects and network planning, indicative results are presented, derived from simulation-based application examples of the three basic mobility models.
机译:在移动通信中,移动性建模涉及与信令和流量负载分析有关的几个方面。在第三代系统中,移动性对网络性能(例如,切换速率)的影响将得到加强,这主要是由于大量的移动用户以及较小的小区尺寸。特别是,移动性模型的准确性对于评估系统设计备选方案和网络实施成本问题至关重要。在本文中,作者提出了三种基本类型的移动性模型,它们适用于分析所有范围的移动通信设计问题。这些模型提供了有关用户移动行为的不同详细程度。特别是,a)城市区域模型在区域区域级别跟踪用户运动,b)区域区域模型考虑在街道网络上移动的用户,c)街道单位模型以几米的精度跟踪用户运动。强调了用于移动通信设计方面的基本模型的有效性。此外,提出了一种以基础机动模型为组成部分的“综合机动模型工具”,旨在开发一种完善的建模方法。这是通过在组件模型之间交换某些特定的(与移动性相关的)参数来提高每个基本模型的输入参数的精度来实现的。为了证明所提出的集成工具既适用于设计方面的分析又适用于网络规划的适用性,从三个基本移动性模型的基于仿真的应用示例中得出了指示性结果。

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