【24h】

Receiver-based heading: Towards on-line energy efficient duty cycle assignments

机译:基于接收方的标题:进行在线节能任务分配

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摘要

Dynamic duty cycling, where a node's duty cycle is adapted according to observed context (e.g, local traffic, other nodes duty cycles), is commonly used by Wireless Sensor Networks (WSNs) to reduce energy consumption. Currently, duty cycles are assigned for every node in the network because it is assumed that all nodes are potential participants in transmissions. Receiver-based protocols, on the other hand, involve transmissions only among a subset of network nodes. Therefore, duty cycling may be limited to those nodes while the other nodes remain in an extended low-power state. In this work, we develop a duty cycle assignment algorithm for the nodes that participate in transmissions by employing two phases. First, nodes that participate in transmissions are selected and marked as “heads.” Second, by acquiring information to estimate future network traffic, the heads are programmed to be awake only during incoming transmissions. Simulation evaluations show that they greatly improve energy efficiency without sacrificing packet delivery ratio or introducing delay compared with traditional methods for duty cycle assignment.
机译:无线传感器网络(WSN)通常使用动态占空比,其中节点的占空比根据观察到的上下文(例如,本地流量,其他节点的占空比)进行调整,以减少能耗。当前,为网络中的每个节点分配占空比,因为假定所有节点都是传输的潜在参与者。另一方面,基于接收者的协议仅涉及网络节点的子集之间的传输。因此,占空比循环可能仅限于那些节点,而其他节点则保持在扩展的低功耗状态。在这项工作中,我们通过采用两个阶段为参与传输的节点开发了一种占空比分配算法。首先,选择参与传输的节点并将其标记为“ heads”。其次,通过获取信息以估计未来的网络流量,磁头被编程为仅在传入传输期间处于唤醒状态。仿真评估表明,与传统的占空比分配方法相比,它们极大地提高了能源效率,而又不牺牲包的传输率或引入延迟。

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