异构 WSN 的 S-MAC 建模

Canek Portillo, J. Martínez-Bauset, V. Pla
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引用次数: 5

摘要

无线传感器网络(WSN)经历了重要的复苏,特别是通过为物联网设计的应用程序。从这个意义上说,一个WSN可以由不同类别的节点组成,这些节点具有不同的特征。另一方面,S-MAC是WSN第一个实现占空比(DC)的介质访问控制(MAC)协议。DC是无线传感器网络中常用的一种节能技术,它允许节点周期性地唤醒和休眠。在这项工作中,考虑异构场景和不同介质访问优先级,进行了S-MAC性能评估研究。为此,建立了二维离散马尔可夫链(DTMC)的解析模型。研究了两类节点构成网络的情形。通过仿真验证了系统的平均时延、吞吐量和能耗等性能参数,得到了准确的结果。
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Modelling of S-MAC for Heterogeneous WSN
Wireless Sensor Networks (WSN) have experienced an important resurgence, especially through applications designed for the Internet of Things. In that sense, a WSN can be constituted of different classes of nodes, having different characteristics. On the other hand, S-MAC was the first Medium Access Control (MAC) protocol for WSN to implement the Duty Cycling (DC). DC is a popular technique for energy conservation in WSN, that allows nodes to wake up and sleep periodically. In this work, a performance evaluation study of S-MAC is performed considering heterogeneous scenarios and diverse medium access priorities. To accomplish that, an analytical model with a pair of two-dimensional Discrete-Time Markov Chains (DTMC) is developed. Scenarios with two classes of nodes forming the network were studied. Performance parameters such as packet average delay, throughput and consumed energy, are obtained and validated by simulation, showing accurate results.
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