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Optimal composition of a virtual sensor for efficient virtualization within sensor-cloud

机译:虚拟传感器的最佳组成,可在传感器云中实现高效虚拟化

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The work focuses on optimal formation of virtual sensors (VSs) within a sensor-cloud infrastructure. Existing work on sensor-cloud have considered the formation of VS with the maximal set of compatible physical sensor nodes. However, as these underlying nodes are highly resource constrained, inefficient and redundant utilization of the nodes takes a toll on the entire performance of the cloud and the network. In this work, we propose algorithms for efficient virtualization of the physical sensor nodes and optimal composition of VSs - within the same geographic region (CoV-I) and spanning across multiple regions (CoV-II). Experimental results demonstrate that, compared to the existing strategy of maximal composition of VSs, CoV-I improves the cumulative energy consumption and the network lifetime by 34.9% and 61.04%, respectively, and CoV-II enhances the parameters by 68.4% and 29.59%, respectively.
机译:这项工作的重点是在传感器-云基础架构中优化虚拟传感器(VS)的形成。关于传感器云的现有工作已考虑使用最大的一组兼容物理传感器节点来形成VS。但是,由于这些基础节点受到资源的高度限制,因此节点的低效和冗余利用会损害云和网络的整体性能。在这项工作中,我们提出了用于物理传感器节点的有效虚拟化和VS的最佳组合的算法-在同一地理区域(CoV-I)内并且跨多个区域(CoV-II)。实验结果表明,与现有的最大VS构成策略相比,CoV-I分别将累计能耗和网络寿命分别提高了34.9%和61.04%,CoV-II则将参数提高了68.4%和29.59% , 分别。

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