实现物联网互操作性的移动多技术网关

G. Aloi, Giuseppe Caliciuri, G. Fortino, Raffaele Gravina, P. Pace, W. Russo, Claudio Savaglio
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引用次数: 66

摘要

在物联网(IoT)的愿景中,我们所有的日常物品都将配备处理、传感和驱动能力,并需要连接到互联网,以充分发挥其潜在的优势。我们的生活将被智能“物”生态系统所包围,这些智能“物”需要被发现、访问、管理并与其他事物互联。为此,我们推出了一种基于智能手机的物联网网关解决方案,它将成为互联网和物之间的通用接口。我们提出了一个高层次的、统一的、可扩展的智能手机软件架构,用于“物”的发现/管理,以及数据的收集、处理和转发到互联网和云。我们在整个具体测试平台的实施过程中评估了所提出解决方案的可行性。系统性能根据能耗、CPU和内存使用情况进行评估。所获得的结果验证了所提出的方法的合理性,即使无线电接口引入的消耗和当前电池容量的减少,也会显著限制智能手机的使用寿命。后一个方面肯定会在短时间内被超越,因为技术进步每天都在生产更高效的无线电接口和电池。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Mobile Multi-Technology Gateway to Enable IoT Interoperability
In the Internet of Things (IoT) vision, all our everyday objects will be equipped with processing, sensing and actuating capabilities and need to be connected to the Internet to provide their full potential benefits. Our life will be surrounded by an ecosystem of smart "things" that need to be found, accessed, managed and interconnected to other things. For that purpose, we introduce an IoT Gateway solution based on a smartphone becoming a universal interface between the Internet and the Things. We propose a high-level, unified and extendible smartphone software architecture for "thing" discovery/management and for data collection, processing and forwarding to Internet and Cloud. We evaluated the feasibility of the proposed solution, throughout the implementation of a specific testbed. System performances are evaluated in terms of energy consumption, CPU and memory usage. Obtained results validated the soundness of the proposed approach presenting a low usage of hardware resources even if, the consumption introduced by the radio interfaces and the reduced capacity of current batteries, significantly limit the smartphone lifetime. This latter aspect will certainly be exceeded in a short time since the technological progress daily produces more efficient radio interfaces and batteries.
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