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Energy-Efficient Multihop Polling in Clusters of Two-Layered Heterogeneous Sensor Networks

机译:两层异构传感器网络集群中的节能多跳轮询

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In this paper we study two-layered heterogeneous sensor networks where two types of nodes are deployed: basic sensor nodes and cluster head nodes. The basic sensor nodes are simple and have limited power supplies, while the cluster head nodes are much more powerful and have much more power supplies, which organize sensors around them into clusters. Such two-layered heterogeneous sensor networks have better scalability and lower overall cost than homogeneous sensor networks. We propose to use polling to collect data from sensors to the cluster head since polling can prolong network life by avoiding collisions and reducing idle listening time of sensors. We will focus on finding energy efficient and collision-free polling schedules in a multi-hop cluster. To reduce energy consumption in idle listening, a schedule is optimal if it uses minimum time. We show that the problem of finding an optimal schedule is NP-hard, and then give a fast on-line algorithm to solve it approximately. We also consider dividing a cluster into sectors and using multiple non-overlapping frequency channels to further reduce the idle listening time of sensors. We conducted simulations on the NS-2 simulator, and the results show that our polling scheme can reduce the active time of sensors by a significant amount while sustaining 100% throughput.
机译:在本文中,我们研究了两层异构传感器网络,其中部署了两种类型的节点:基本传感器节点和群集头节点。基本的传感器节点很简单并且电源有限,而簇头节点则更强大并且具有更多的电源,可以将周围的传感器组织为簇。与同质传感器网络相比,这种两层异构传感器网络具有更好的可伸缩性和更低的总体成本。我们建议使用轮询从传感器收集数据到群集头,因为轮询可以避免冲突并减少传感器的空闲侦听时间,从而可以延长网络寿命。我们将重点关注在多跳群集中查找节能且无冲突的轮询计划。为了减少空闲聆听中的能量消耗,如果计划使用最少的时间,则是最佳的计划。我们证明寻找最优调度的问题是NP难的,然后给出一种快速的在线算法来近似解决它。我们还考虑将群集划分为多个扇区,并使用多个不重叠的频率通道来进一步减少传感器的空闲监听时间。我们在NS-2模拟器上进行了仿真,结果表明,我们的轮询方案可以在保持100%吞吐量的同时显着减少传感器的活动时间。

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