全球物联网移动性:基于路径的转发方法

Mohammed Q. S. Al-Khalidi, Rabab Al-Zaidi, A. Abubahia, Hari Mohan Pandey, M. Biswas, Mohammad Hammoudeh
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引用次数: 1

摘要

随着联网车辆、无人机和医疗可穿戴设备等移动物联网(IoT)设备的大量涌现,物联网网络的移动连接能力远远超出了传统的计算平台。这种服务供应的成功高度依赖于这些使能技术提供的灵活性,以支持使用不同设备和协议栈的物联网移动性。许多连接的移动物联网设备是自主的,资源有限,这给移动物联网通信带来了额外的挑战。因此,鉴于物联网设备和应用的独特移动性需求,许多挑战仍有待解决。本文提出了一种可以处理微观和宏观移动场景的物联网网络全球移动管理解决方案。该解决方案利用基于路径的转发结构以及来自信息中心网络的机制。该解决方案同样适用于传统的基于会话的移动设备和新兴的基于信息的物联网设备(如移动传感器)。仿真评估显示,在数据包传输和信令成本方面,支持跨不同物联网域的宏观移动性切换的开销最小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Global IoT Mobility: A Path Based Forwarding Approach
With the huge proliferation of mobile Internet of Things (IoT) devices such as connected vehicles, drones, and healthcare wearables, IoT networks are promising mobile connectivity capacity far beyond the conventional computing platforms. The success of this service provisioning is highly dependent on the flexibility offered by such enabling technologies to support IoT mobility using different devices and protocol stacks. Many of the connected mobile IoT devices are autonomous, and resource constrained, which poses additional challenges for mobile IoT communication. Therefore, given the unique mobility requirements of IoT devices and applications, many challenges are still to be addressed. This paper presents a global mobility management solution for IoT networks that can handle both micro and macro mobility scenarios. The solution exploits a path-based forwarding fabric together with mechanisms from Information-Centric Networking. The solution is equally suitable for legacy session-based mobile devices and emerging information-based IoT devices such as mobile sensors. Simulation evaluations have shown minimum overhead in terms of packet delivery and signalling costs to support macro mobility handover across different IoT domains.
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