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A Comprehensive Analysis of the MAC Unreliability Problem in IEEE 802.15.4 Wireless Sensor Networks

机译:IEEE 802.15.4无线传感器网络中MAC不可靠性问题的综合分析

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Wireless Sensor Networks (WSNs) represent a very promising solution in the field of wireless technologies for industrial applications. However, for a credible deployment of WSNs in an industrial environment, four main properties need to be fulfilled, i.e., energy efficiency, scalability, reliability, and timeliness. In this paper, we focus on IEEE 802.15.4 WSNs and show that they can suffer from a serious unreliability problem. This problem arises whenever the power management mechanism is enabled for energy efficiency, and results in a very low packet delivery ratio, also when the number of sensor nodes in the network is very low (e.g., 5). We carried out an extensive analysis—based on both simulation and experiments on a real WSN—to investigate the fundamental reasons of this problem, and we found that it is caused by the contention-based Medium Access Control (MAC) protocol used for channel access and its default parameter values. We also found that, with a more appropriate MAC parameters setting, it is possible to mitigate the problem and achieve a delivery ratio up to 100%, at least in the scenarios considered in this paper. However, this improvement in communication reliability is achieved at the cost of an increased latency, which may not be acceptable for industrial applications with stringent timing requirements. In addition, in some cases this is possible only by choosing MAC parameter values formally not allowed by the standard.
机译:无线传感器网络(WSN)代表了工业应用无线技术领域中非常有前途的解决方案。但是,为了在工业环境中可靠地部署WSN,需要满足四个主要属性,即能效,可伸缩性,可靠性和及时性。在本文中,我们将重点放在IEEE 802.15.4 WSN上,并表明它们可能遭受严重的不可靠性问题。每当使能功率管理机制以提高能量效率时,就会出现此问题,并且导致非常低的分组传送率,并且当网络中的传感器节点的数量非常低时(例如,5)。我们在真实的WSN上基于仿真和实验进行了广泛的分析,以研究此问题的根本原因,我们发现这是由用于信道访问的基于竞争的媒体访问控制(MAC)协议引起的及其默认参数值。我们还发现,至少在本文考虑的情况下,通过使用更合适的MAC参数设置,可以缓解此问题并实现高达100%的交付率。但是,这种通信可靠性的提高是以增加等待时间为代价的,这对于具有严格时序要求的工业应用可能是不可接受的。另外,在某些情况下,只有通过选择标准正式禁止的MAC参数值,才有可能。

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