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Performance evaluation of 802.15.4 Medium Access Control during network association and synchronization for sensor networks

机译:传感器网络的网络关联和同步期间802.15.4媒体访问控制的性能评估

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A key aspect of a wireless sensor network is its ability to self-organize and maintain connectivity. Medium Access Control (MAC) protocol manages network self-configuration, which includes establishing a personal area network (PAN), finding a network to associate or disassociate with, and synchronizing if required. Currently, there is limited research that addresses the network initialization phase. This paper provides a performance evaluation of the 802.15.4 MAC during device association and synchronization with the PAN coordinator. Our results show the impact of beacon interval and the number of associating nodes in terms of association time delay and energy consumption in stationary wireless sensor networks. Results illustrate that energy consumption and association time increase with increasing number of nodes associating with a coordinator. Moreover, short beacon intervals consume more energy due to the frequency of beacon frames that nodes have to keep track of to maintain synchronization. However, short beacon intervals reduce the time required for the nodes to associate, in contrast to longer beacon intervals that are undesirable for real time and mobile applications. Furthermore, for longer beacon intervals, BO= 12 to BO=14, there is an abrupt increase in energy consumption as the number of associating nodes increase, even for as few as as four nodes.
机译:无线传感器网络的一个关键方面是其自组织和维持连接性的能力。介质访问控制(MAC)协议管理网络自我配置,其中包括建立个人局域网(PAN),查找要与之关联或取消关联的网络以及在需要时进行同步。当前,针对网络初始化阶段的研究很少。本文提供了在设备关联以及与PAN协调器同步期间对802.15.4 MAC的性能评估。我们的结果显示了固定无线传感器网络中信标间隔和关联节点数量对关联时间延迟和能耗的影响。结果表明,能量消耗和关联时间随着与协调器关联的节点数量的增加而增加。而且,由于信标帧的频率,节点必须跟踪以维持同步,因此较短的信标间隔会消耗更多的能量。但是,与较长的信标间隔相比,较短的信标间隔减少了节点关联所需的时间,而这对于实时和移动应用程序是不希望的。此外,对于更长的信标间隔(BO = 12至BO = 14),随着关联节点数量的增加(甚至只有四个节点),能耗也会突然增加。

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