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首页> 外文期刊>ACM transactions on sensor networks >A Longitudinal Study of Vibration-Based Water Flow Sensing
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A Longitudinal Study of Vibration-Based Water Flow Sensing

机译:基于振动的水流传感的纵向研究

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摘要

We present a long-term and cross-sectional study of a vibration-based water flow rate monitoring system in practical environments and scenarios. In our earlier research, we proved that a water flow monitoring system with vibration sensors is feasible by deploying and evaluating it in a small-scale laboratory setting. To validate the proposed system, the system was deployed in existing environments-two houses and a public restroom-and in two different laboratory test settings. With the collected data, we first demonstrate various aspects of the system's performance, including sensing stability, sensor node lifetime, the stability of autonomous sensor calibration, time to adaptation, and deployment complexity. We then discuss the practical challenges and lessons from the full-scale deployments. The evaluation results show that our water monitoring solution is a practical, quick-to-deploy system with a less than 5% average flow estimation error.
机译:我们提出了在实际环境和场景中基于振动的水流量监控系统的长期和横断面研究。在我们较早的研究中,我们证明了通过在小型实验室环境中进行部署和评估,带有振动传感器的水流监控系统是可行的。为了验证所提出的系统,该系统已部署在现有环境(两间房屋和一间公共洗手间)以及两种不同的实验室测试环境中。利用收集到的数据,我们首先演示系统性能的各个方面,包括传感稳定性,传感器节点寿命,自主传感器校准的稳定性,适应时间以及部署复杂性。然后,我们讨论全面部署中的实际挑战和教训。评估结果表明,我们的水监控解决方案是一种实用的,可快速部署的系统,平均流量估算误差小于5%。

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