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Time-Series-Based Leakage Detection Using Multiple Pressure Sensors in Water Distribution Systems

机译:供水系统中使用多个压力传感器的基于时间序列的泄漏检测

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摘要

Leak detection is nowadays an important task for water utilities as leakages in water distribution systems (WDS) increase economic costs significantly and create water resource shortages. Monitoring data such as pressure and flow rate of WDS fluctuate with time. Diagnosis based on time series monitoring data is thought to be more convincing than one-time point data. In this paper, a threshold selection method for the correlation coefficient based on time series data is proposed based on leak scenario falsification, to explore the advantages of data interpretation based on time series for leak detection. The approach utilizes temporal varying correlation between data from multiple pressure sensors, updates the threshold values over time, and scans multiple times for a scanning time window. The effect of scanning time window length on threshold selection is also tested. The performance of the proposed method is tested on a real, full-scale water distribution network using synthetic data, considering the uncertainty of demand and leak flow rates, sensor noise, and so forth. The case study shows that the scanning time window length of 3–6 achieves better performance; the potential of the method for leak detection performance improvement is confirmed, though affected by many factors such as modeling and measurement uncertainties.
机译:如今,泄漏检测对于水务公司来说是一项重要任务,因为配水系统(WDS)的泄漏会大大增加经济成本并造成水资源短缺。 WDS的压力和流量等监视数据会随时间波动。人们认为,基于时间序列监视数据的诊断比一次性时间点数据更具说服力。提出了一种基于泄漏场景伪造的基于时间序列数据的相关系数阈值选择方法,以探索基于时间序列的数据解释在泄漏检测中的优势。该方法利用了来自多个压力传感器的数据之间的时间变化相关性,随时间更新阈值,并多次扫描扫描时间窗口。还测试了扫描时间窗口长度对阈值选择的影响。考虑到需求和泄漏流量的不确定性,传感器噪声等因素,使用合成数据在真实的,大规模的供水网络上测试了该方法的性能。案例研究表明,扫描时间窗口长度为3–6可获得更好的性能。尽管受到建模和测量不确定性等许多因素的影响,但仍证实了该方法可提高泄漏检测性能的潜力。

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