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A Proposal for IoT Dynamic Routes Selection Based on Contextual Information

机译:基于上下文信息的物联网动态路由选择的建议

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摘要

The Internet of Things (IoT) is based on interconnection of intelligent and addressable devices, allowing their autonomy and proactive behavior with Internet connectivity. Data dissemination in IoT usually depends on the application and requires context-aware routing protocols that must include auto-configuration features (which adapt the behavior of the network at runtime, based on context information). This paper proposes an approach for IoT route selection using fuzzy logic in order to attain the requirements of specific applications. In this case, fuzzy logic is used to translate in math terms the imprecise information expressed by a set of linguistic rules. For this purpose, four Objective Functions (OFs) are proposed for the Routing Protocol for Low Power and Loss Networks (RPL); such OFs are dynamically selected based on context information. The aforementioned OFs are generated from the fusion of the following metrics: Expected Transmission Count (ETX), Number of Hops (NH) and Energy Consumed (EC). The experiments performed through simulation, associated with the statistical data analysis, conclude that this proposal provides high reliability by successfully delivering nearly 100% of data packets, low delay for data delivery and increase in QoS. In addition, an 30% improvement is attained in the network life time when using one of proposed objective function, keeping the devices alive for longer duration.
机译:物联网(IoT)基于智能和可寻址设备的互连,从而通过互联网连接实现其自治和主动行为。物联网中的数据分发通常取决于应用程序,并且需要上下文感知的路由协议,该协议必须包括自动配置功能(这些功能会根据上下文信息在运行时适应网络的行为)。本文提出了一种使用模糊逻辑进行物联网路由选择的方法,以满足特定应用的需求。在这种情况下,模糊逻辑用于以数学术语翻译由一组语言规则表示的不精确信息。为此,针对低功耗和损耗网络(RPL)的路由协议,提出了四个目标函数(OF)。基于上下文信息动态地选择这样的OF。前述OF是通过以下指标的融合而生成的:预期传输计数(ETX),跃点数(NH)和能耗(EC)。通过仿真进行的实验与统计数据分析相关联,得出的结论是,该建议通过成功交付近100%的数据包提供了高可靠性,数据交付的延迟很短,并且QoS有所提高。此外,使用建议的目标功能之一时,网络寿命可提高30%,从而使设备保持更长的使用寿命。

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