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Efficiency of Distributed Compression and its Dependence on Sensor Node Deployments

机译:分布式压缩效率及其对传感器节点部署的依赖性

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In this paper we analyze the energy-efficiency of distributed compression and its dependence on the node deployment strategies for Wireless Sensor Networks (WSNs). Reduced energy and bandwidth usage can be achieved by Distributed Source Coding (DSC) which is a lossless compression technique used in, for example, data gathering applications. We evaluate the performance of clustered WSNs applying DSC under various topologies and different cluster head selection schemes. The topologies considered are obtained from three different node deployment models which are fundamentally based on random point processes. Those models cover the extreme deployment cases and allow direct comparison between various scenarios. The evaluation takes into account the packet header costs and the signal processing costs associated with DSC. Additionally, the applied energy model makes use of measurements obtained from real experiments. The simulations results show very good performance in terms of energy-efficiency. Furthermore, significant average energy savings and average lifetime extensions are possible using DSC under different deployment strategies. This study also leads to the identification of the best fitting deployment strategy in relation to the characteristics of different sensed phenomena. Hence, the proposed approach is particularly suited to support the optimization of networks in realistic environments.
机译:在本文中,我们分析了分布式压缩的能量效率及其对无线传感器网络(WSN)节点部署策略的依赖性。通过分布式源编码(DSC)可以实现降低的能量和带宽使用,这是一种用于例如数据收集应用程序的无损压缩技术。我们评估在各种拓扑和不同群集头选择方案下应用DSC的集群WSNS的性能。考虑的拓扑是从三种不同的节点部署模型获得,基于随机点过程。这些模型涵盖了极端部署案例,并允许在各种场景之间进行直接比较。评估考虑了分组头成本和与DSC相关联的信号处理成本。另外,应用的能量模型利用从真实实验中获得的测量。模拟结果在节能方面表现出很好的性能。此外,在不同的部署策略下使用DSC可以实现显着的平均能量节省和平均寿命延伸。本研究还导致识别与不同感测现象的特征有关的最佳拟合部署策略。因此,所提出的方法特别适用于支持现实环境中的网络优化。

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