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Energy-efficient continuous and event-driven monitoring

机译:节能连续和事件驱动的监控

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Optimizing the energy consumption in monitoring and communication protocols for wireless sensor networks has become the most important performance objective. We explore the problem of maximizing sensor network lifetime, i.e., time during which the set of targets is covered. We propose centralized algorithms for lifetime maximization with provable approximation ratio for the realistic model studied. In this paper we introduce reliability requirement for distributed target-monitoring protocols and prove that previously considered protocols are reliable. A new deterministic energy-efficient protocol for sensor networks (DEEPS) aimed at prolonging lifetime is proposed. We prove that DEEPS is reliable and compare DEEPS with several known target-monitoring protocols in NS2 environment using LEACH (W. Heinzelman et al., 2000) for simulating monitoring data delivery to the base. Our contributions also include the first full-fledged simulation of the monitoring protocols on NS2 combined with LEACH (W. Heinzelman et al., 2000) as a communication protocol, and extensive experimental study of several protocols showing almost 2 times increase in the lifetime for DEEPS over known protocols.
机译:优化无线传感器网络监控和通信协议中的能耗已成为最重要的性能目标。我们探讨了最大化传感器网络寿命的问题,即覆盖了该组目标的时间。我们提出了用于研究所研究的现实模型的终身最大化的集中算法。在本文中,我们为分布式目标监控协议引入可靠性要求,并证明先前考虑的协议是可靠的。提出了一种用于延长寿命的传感器网络(深度)的新的确定性节能协议。我们证明深度是可靠的,并且使用Leach(W. Heinzelman等,2000)在NS2环境中使用几种已知的目标监控协议进行了比较,用于模拟向基础监控数据传送的监控数据。我们的贡献还包括第一次全面模拟NS2的监测协议与LEACH(W. Heinzelman等,2000)作为通信协议,以及对几种协议的广泛实验研究显示寿命差不多2倍深入了解了已知的协议。

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