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首页> 外文期刊>Canadian Journal of Civil Engineering >Energy loss in cement-based material for efficient sensor deployment at a site
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Energy loss in cement-based material for efficient sensor deployment at a site

机译:基于水泥基材料的能量损失,在网站上有效传感器部署

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摘要

Past construction research has focused primarily on the realization of tracking systems but much less on their effectiveness. Despite significant achievements, little is known about the relationship between the environmental site conditions and deployed sensors and their influence on system effectiveness. To reduce this knowledge gap, we investigate the effect of cement-based material on signal energy loss using electromagnetic simulation. We take conventional electromagnetic equations and derive equations that quantitatively describe the signal behavior influenced by cement-based material. Then, we conduct high frequency structure simulator (HFSS) simulations and use the experimental measurements for benchmark comparison with our analytical solution. Results suggest that our analytical method accurately quantifies attenuated signal loss. Also, we construct an attenuation spectrum of energy loss for cement-based material, which can serve as a reference for sensor deployment. Therefore, the method should enable quantification of the signal loss of sensors without actually deploying them or measuring signal data, which should lead to the more effective deployment of tracking sensors.
机译:过去的施工研究主要集中在实现跟踪系统,但效果少得多。尽管取得了重大成就,但对环境现场条件和部署传感器之间的关系知之甚少及其对系统效率的影响。为减少这种知识差距,我们研究了基于水泥基材料对使用电磁仿真信号能量损失的影响。我们采用传统的电磁方程和衍生方程,其定量地描述受水泥基材料影响的信号行为。然后,我们进行高频结构模拟器(HFSS)模拟,并使用实验测量与我们的分析解决方案进行基准比较。结果表明,我们的分析方法精确量化了衰减信号损耗。此外,我们构建了基于水泥基材料的能量损失的衰减光谱,其可以作为传感器部署的参考。因此,该方法应使传感器的信号损耗能够进行量化,而无需实际部署它们或测量信号数据,这应该导致跟踪传感器的更有效地部署。

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