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Application-driven, Energy-efficient Communication In Wireless Sensor Networks

机译:无线传感器网络中应用驱动的节能通信

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Several sensor network applications based on data diffusion and data management can determine the communication transfer rate between two sensors beforehand. In this framework, we consider the problem of energy efficient communication among nodes of a wireless sensor network and propose an application-driven approach that minimizes radio activity intervals and prolongs network lifetime. On the basis of possible communication delays we estimate packet arrival intervals at any intermediate hop of a fixed-rate data path. We study a generic strategy of radio activity minimization wherein each node maintains the radio switched on just in the expected packet arrival intervals and guarantees low communication latency. We define a probabilistic model that allows the evaluation of the packet loss probability that results from the reduced radio activity. The model can be used to optimally choose the radio activity intervals that achieve a certain probability of successful packet delivery for a specific radio activity strategy. Relying on the probabilistic model we also define a cost model that estimates the energy consumption of the proposed strategies, under specific settings. We propose three specific strategies and numerically evaluate the associated costs. We finally validate our work with a simulation made with TOSSIM (the Berkeley motes' simulator). The simulation results confirm the validity of the approach and the accuracy of the analytic models.
机译:基于数据扩散和数据管理的几种传感器网络应用程序可以预先确定两个传感器之间的通信传输速率。在此框架中,我们考虑了无线传感器网络节点之间的节能通信问题,并提出了一种应用程序驱动的方法,该方法可最大程度地减少无线电活动间隔并延长网络寿命。基于可能的通信延迟,我们估计固定速率数据路径的任何中间跃点处的数据包到达间隔。我们研究了一种无线电活动最小化的通用策略,其中每个节点仅在预期的数据包到达间隔内保持无线电接通并保证低通信延迟。我们定义了一个概率模型,该模型可以评估由于无线电活动减少而导致的丢包概率。该模型可用于为特定的无线电活动策略最佳地选择达到成功分组传送成功概率的无线电活动间隔。依靠概率模型,我们还定义了一种成本模型,该模型可以在特定设置下估算所提议策略的能耗。我们提出了三种具体的策略,并在数值上评估了相关成本。最后,我们使用TOSSIM(伯克利motes的模拟器)进行的仿真验证了我们的工作。仿真结果证实了该方法的有效性和分析模型的准确性。

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