基于无冲突调度的无线传感器网络能量优化和可靠数据采集

Huang Lee, Abtin Keshavarzian
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引用次数: 40

摘要

我们考虑了固定无线传感器网络的监控或定期数据收集问题,并提出了一个实用、节能和可靠的解决方案。通过三种设计方法的结合来实现节能:(a)采用网络流优化技术,计算出网络中各节点间通信负载均衡的最优方案。这给出了数据收集过程所需能量的下界,(b)不是使用固定的网络拓扑(通信树),而是构建了一组优化树,并且通信树在不同的数据收集周期中变化。研究表明,该方法的平均能耗率非常接近于最优值,(c)数据包交换过程基于无冲突调度设计,以最小化每个节点的数据包数量和发送和接收时间。通过在调度中包含许多重传机会来保证过程的可靠性。通过仿真对其性能进行了评价。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Towards Energy-Optimal and Reliable Data Collection via Collision-Free Scheduling in Wireless Sensor Networks
We consider the problem of supervision or periodic data collection for stationary wireless sensor networks and present a practical, energy-efficient, and reliable solution. Energy-efficiency is achieved by combining three design methods: (a) adopting network flow optimization techniques, the optimal scheme for balancing the communication load among all the nodes in the network is calculated. This gives the lower bound for the energy required for data collection process, (b) instead of using a fixed network topology (communication tree), a set of optimized trees is constructed and the communication tree varies over different data collection cycles. We show that this method achieves an average energy consumption rate very close to the optimal value, (c) the packet exchange procedure is designed based on collision-free schedules, to minimize the number of packets and the transmission and reception times for each node. Reliability of the process is guaranteed by including many retransmission opportunities in the schedules. The performance is evaluated through simulations.
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