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Implementation and performance evaluation of two fuzzy-based systems for selection of loT devices in opportunistic networks

机译:机会网络中两个基于模糊系统的loT设备选择系统的实现和性能评估

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The opportunistic networks are a subclass of delay-tolerant networks where communication opportunities (contacts) are intermittent and there is no need to establish an end-to-end link between the communication nodes. The internet of things (IoT) present the notion of large networks of connected devices, sharing data about their environments and creating a diverse ecosystem of sensors, actuators, and computing nodes. IoT networks are a departure from traditional enterprise networks in terms of their scale and consist of heterogeneous collections of resource constrained nodes that closely interact with their environment. There are different issues for these networks. One of them is the selection of IoT devices in order to carry out a task in opportunistic networks. In this work, we implement and compare two fuzzy-based systems (FBS1 and FBS2) for IoT device selection in opportunistic networks. For FBS1, we use three input parameters: IoT device storage (IDST), IoT device waiting time (IDWT) and IoT device remaining energy (IDRE). The output parameter is IoT device selection decision (IDSD). For FBS2, we consider four input parameters adding IoT device security (IDSC) as a new parameter. Comparing complexity of FBS1 and FBS2, the FBS2 is more complex than FBS1. But, the FBS2 is more flexible and makes a better selection of IoT devices than FBS1.
机译:机会网络是延迟容忍网络的子类,其中通信机会(联系)是间歇性的,无需在通信节点之间建立端到端链接。物联网(IoT)提出了连接设备的大型网络的概念,共享有关其环境的数据并创建了传感器,执行器和计算节点的多样化生态系统。物联网网络在规模上与传统企业网络不同,它由与环境紧密交互的资源受限节点的异构集合组成。这些网络存在不同的问题。其中之一是选择IoT设备,以在机会网络中执行任务。在这项工作中,我们实现并比较了机会网络中用于物联网设备选择的两个基于模糊的系统(FBS1和FBS2)。对于FBS1,我们使用三个输入参数:IoT设备存储(IDST),IoT设备等待时间(IDWT)和IoT设备剩余能量(IDRE)。输出参数是IoT设备选择决策(IDSD)。对于FBS2,我们考虑添加IoT设备安全性(IDSC)的四个输入参数作为新参数。比较FBS1和FBS2的复杂度,FBS2比FBS1更复杂。但是,与FBS1相比,FBS2更加灵活,并且可以更好地选择IoT设备。

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