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首页> 外文期刊>IEEE transactions on industrial informatics >Superframe Planning and Access Latency of Slotted MAC for Industrial WSN in IoT Environment
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Superframe Planning and Access Latency of Slotted MAC for Industrial WSN in IoT Environment

机译:物联网环境中工业WSN的时隙MAC的超帧规划和访问延迟

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摘要

Industrial wireless sensor network (IWSN) is a key enabling technology for the Internet-of-things (IoT). IWSN acts as one of the fundamental elements of the IoT infrastructure to bridge the physical sensors and actuators in field and backbone systems in the Internet. For deterministic performances, all mainstream IWSN standards utilize the slotted media access control (MAC) where the communication is allocated based on the superframe that comprises a number of slots in either contention-based access or contention-free access modes. In this paper, the planning of the superframe structure of the slotted MAC is investigated by two means: 1) a mathematical model of the MAC access latency based on the queue theory; and 2) an easy-to-use software tool based on packet-level simulation. The mathematical model gives an overall estimation of the average MAC access latency of the whole network. The software tool gives the exact latency of each packet and then can derive the optimal superframe structure of the network. The two means are validated correspondingly. With the methods proposed in this paper, IWSN designers can minimize the MAC access latency while satisfying the requirements at different generating rates of packet, number of nodes in the network, and packet buffer length of each node.
机译:工业无线传感器网络(IWSN)是物联网(IoT)的关键启用技术。 IWSN是物联网基础架构的基本元素之一,用于桥接Internet现场和骨干系统中的物理传感器和执行器。为了获得确定的性能,所有主流IWSN标准都使用时隙媒体访问控制(MAC),其中基于超帧分配通信,该超帧包括基于竞争的访问或无竞争的访问模式中的多个时隙。本文通过两种方式研究了时隙MAC的超帧结构的规划:1)基于队列理论的MAC访问延迟的数学模型; 2)基于数据包级仿真的易于使用的软件工具。该数学模型给出了整个网络的平均MAC访问延迟的总体估计。该软件工具会给出每个数据包的确切延迟,然后可以得出网络的最佳超帧结构。相应地验证了这两种方法。通过本文提出的方法,IWSN设计人员可以在满足不同数据包生成速率,网络中节点数以及每个节点的数据包缓冲区长度的要求的同时,将MAC访问延迟降至最低。

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