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A 2-D random walk mobility model for WiMAX location update

机译:用于WiMAX位置更新的二维随机步行移动性模型

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Mobile Worldwide Interoperability for Microwave Access (WiMAX) network is increasingly popular, and up-coming deployments can be expected with the development of intelligent transport systems (ITS) and the advent of smart cities. However, both applications will demand an efficient management of high mobility. Therefore, optimizing the cost of mobility signaling procedures of the network is key. In this work we study the location update procedure in WiMAX networks. Whilst previous works consider 1-D layouts of base stations (BSs), corresponding to ITS-based scenarios, we focus on extending that scenario to develop an analytical model for 2-D layouts, which fit better for cities. Our model consider the two cases in which the logical entity in charge of handling the location tracking and paging operations, known as anchor paging controller (APC), is assigned for a mobile station (MS) during a location update: when the old APC is reassigned (no relocation), and when a new APC is assigned (relocation). The comparison is made by calculating the cost (as the number of exchanged messages) of the location update procedure in each case. We validate our model through simulations, and discuss the impact on the final cost of several parameters, such as type and frequency of the movements. Finally, we provide some guidelines on how to assign the APC depending on the network parameters. (C) 2015 Elsevier B.V. All rights reserved.
机译:全球移动微波接入互通性(WiMAX)网络日益普及,随着智能运输系统(ITS)的发展和智能城市的出现,可以预期将出现即将到来的部署。但是,这两种应用都需要对高移动性进行有效管理。因此,优化网络的移动性信令过程的成本是关键。在这项工作中,我们研究了WiMAX网络中的位置更新过程。尽管先前的工作考虑了对应于基于ITS的方案的基站(BS)的1-D布局,但我们专注于扩展该方案以开发适用于城市的2-D布局的分析模型。我们的模型考虑了以下两种情况:在位置更新期间,将负责处理位置跟踪和寻呼操作的逻辑实体(称为锚定寻呼控制器(APC))分配给了移动站(MS):重新分配(无重定位),以及分配新的APC时(重定位)。通过计算每种情况下位置更新过程的成本(作为交换的消息数)进行比较。我们通过仿真验证模型,并讨论对几个参数(例如机芯的类型和频率)的最终成本的影响。最后,我们提供了一些有关如何根据网络参数分配APC的准则。 (C)2015 Elsevier B.V.保留所有权利。

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