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首页> 外文期刊>Parallel and Distributed Systems, IEEE Transactions on >Joint Connectivity-Coverage Temperature-Aware Algorithms for Wireless Sensor Networks
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Joint Connectivity-Coverage Temperature-Aware Algorithms for Wireless Sensor Networks

机译:无线传感器网络的联合连接-覆盖温度感知算法

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摘要

Temperature variations have a significant effect on low power wireless sensor networks as wireless communication links drastically deteriorate when temperature increases. A reliable deployment should take temperature into account to avoid network connectivity problems resulting from poor wireless links when temperature increases. A good deployment needs also to adapt its operation and save resources when temperature decreases and wireless links improve. Taking into account the probabilistic nature of the wireless communication channel, we develop a mathematical model that provides the most energy efficient deployment in function of temperature without compromising the correct operation of the network by preserving both connectivity and coverage. We use our model to design three temperature-aware algorithms that seek to save energy (i) by putting some nodes in hibernate mode as in the Stop-Operate (SO) algorithm, or (ii) by using transmission power control as in Power-Control (PC), or (iii) by doing both techniques as in Stop-Operate Power-Control (SOPC). All proposed algorithms are fully distributed and solely rely on temperature readings without any information exchange between neighbors, which makes them low overhead and robust. Our results identify the optimal operation of each algorithm and show that a significant amount of energy can be saved by taking temperature into account.
机译:温度变化会对低功率无线传感器网络产生重大影响,因为温度升高时无线通信链路会急剧恶化。可靠的部署应考虑温度,以避免温度升高时由于无线链路不良而导致的网络连接问题。一个好的部署还需要在温度降低和无线链路改善时调整其操作并节省资源。考虑到无线通信信道的概率性质,我们开发了一种数学模型,该数学模型可在保持温度和功能的同时提供最节能的部署,而不会通过保留连接性和覆盖范围而损害网络的正确运行。我们使用我们的模型设计了三种温度感知算法,这些算法旨在(i)通过像Stop-Operate(SO)算法那样将某些节点置于休眠模式来节省能源,或者(ii)通过使用Power-power中的传输功率控制来节约能源。控制(PC),或者(iii)通过执行“停止-运行”电源控制(SOPC)中的两种技术来进行控制。所有提出的算法都是完全分布式的,并且仅依赖于温度读数,而邻居之间没有任何信息交换,这使得它们的开销较低且健壮。我们的结果确定了每种算法的最佳操作,并表明通过考虑温度可以节省大量能量。

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