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Sleep Scheduling for Critical Event Monitoring in Wireless Sensor Networks

机译:用于无线传感器网络中关键事件监控的睡眠调度

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摘要

In this paper, we focus on critical event monitoring in wireless sensor networks (WSNs), where only a small number of packets need to be transmitted most of the time. When a critical event occurs, an alarm message should be broadcast to the entire network as soon as possible. To prolong the network lifetime, some sleep scheduling methods are always employed in WSNs, resulting in significant broadcasting delay, especially in large scale WSNs. In this paper, we propose a novel sleep scheduling method to reduce the delay of alarm broadcasting from any sensor node in WSNs. Specifically, we design two determined traffic paths for the transmission of alarm message, and level-by-level offset based wake-up pattern according to the paths, respectively. When a critical event occurs, an alarm is quickly transmitted along one of the traffic paths to a center node, and then it is immediately broadcast by the center node along another path without collision. Therefore, two of the big contributions are that the broadcasting delay is independent of the density of nodes and its energy consumption is ultra low. Exactly, the upper bound of the broadcasting delay is only 3D+2L, where D is the maximum hop of nodes to the center node, L is the length of sleeping duty cycle, and the unit is the size of time slot. Extensive simulations are conducted to evaluate these notable performances of the proposed method compared with existing works.
机译:在本文中,我们专注于无线传感器网络(WSN)中的关键事件监视,在该传感器中,大多数时间只需要传输少量数据包。发生严重事件时,应将警报消息尽快广播到整个网络。为了延长网络寿命,WSN中始终采用某些睡眠调度方法,这会导致较大的广播延迟,尤其是在大规模WSN中。在本文中,我们提出了一种新颖的睡眠调度方法,以减少来自WSN中任何传感器节点的警报广播的延迟。具体而言,我们分别设计了两个确定的用于传输警报消息的流量路径,并根据这些路径分别设计了基于逐级偏移的唤醒模式。发生严重事件时,警报会沿着一条业务路径快速传输到中心节点,然后立即由中心节点沿另一条路径广播而不会发生冲突。因此,两个重要的贡献是广播延迟与节点的密度无关,并且其能耗极低。确切地说,广播延迟的上限仅为3D + 2L,其中D是节点到中心节点的最大跳数,L是睡眠占空比的长度,单位是时隙的大小。与现有工作相比,进行了广泛的仿真以评估所提出方法的这些显着性能。

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