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Critical-Path Aware Scheduling for Latency Efficient Broadcast in Duty-Cycled Wireless Sensor Networks

机译:占空比无线传感器网络中延迟有效广播的关键路径感知调度

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Minimum latency scheduling has arisen as one of the most crucial problems for broadcasting in duty-cycled Wireless Sensor Networks (WSNs). Typical solutions for the broadcast scheduling iteratively search for nodes able to transmit a message simultaneously. Other nodes are prevented from transmissions to ensure that there is no collision in a network. Such collision-preventions result in extra delays for a broadcast and may increase overall latency if the delays occur along critical paths of the network. To facilitate the broadcast latency minimization, we propose a novel approach, critical-path aware scheduling (CAS), which schedules transmissions with a preference of nodes in critical paths of a duty-cycled WSN. This paper presents two schemes employing CAS which produce collision-free and collision-tolerant broadcast schedules, respectively. The collision-free CAS scheme guarantees an approximation ratio of in terms of latency, where denotes the maximum node degree in a network. By allowing collision at noncritical nodes, the collision-tolerant CAS scheme reduces up to 10.2 percent broadcast latency compared with the collision-free ones while requiring additional transmissions for the noncritical nodes experiencing collisions. Simulation results show that broadcast latencies of the two proposed schemes are significantly shorter than those of the existing methods.
机译:最小等待时间调度已成为占空比无线传感器网络(WSN)中广播的最关键问题之一。广播调度的典型解决方案迭代搜索能够同时发送消息的节点。禁止其他节点进行传输,以确保网络中没有冲突。这样的冲突预防导致广播的额外延迟,并且如果延迟沿着网络的关键路径发生,则可能会增加总体延迟。为了促进广播等待时间的最小化,我们提出了一种新颖的方法,即关键路径感知调度(CAS),它利用占空比WSN的关键路径中的节点优先级来调度传输。本文提出了两种采用CAS的方案,分别产生无冲突和容错的广播时间表。无冲突CAS方案可确保以时延表示近似值,其中表示网络中的最大节点度。通过允许在非关键节点发生冲突,与无冲突协议相比,容错CAS方案与无冲突协议相比,广播延迟最多可降低10.2%,同时还需要为发生冲突的非关键节点提供额外的传输。仿真结果表明,两种方案的广播等待时间明显短于现有方法。

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