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A Data-Based Framework for Identifying a Source Location of a Contaminant Spill in a River System with Random Measurement Errors

机译:一个基于数据的框架用于识别随机测量误差在河流系统中的污染物泄漏源位置。

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摘要

This study addresses the problem of identifying the source location of a contaminant spill in a river system when a sensor network returns observations containing random measurement errors. To solve this problem, we suggest a new framework comprising three main steps: (i) spill detection, (ii) data preprocessing, and (iii) source identification. Specifically, we applied a statistical process control chart to detect a contaminant spill with measurement errors while keeping the false alarm rate at less than or equal to a user-specified value. After detecting a spill, we generated a nonlinear regression model to estimate a breakthrough curve of the observations and derive a characteristic vector of the estimated curve. Using the characteristic vector as an input, a random forest model was constructed with the sensor raising the first alarm. The model provides output values between 0 and 1 to represent the possibility of each candidate location being the true spill source. These possibility values allow users to identify strong candidate locations for the spill. The accuracy of our framework was tested on part of the Altamaha River system in Georgia, USA.
机译:这项研究解决了当传感器网络返回包含随机测量误差的观测值时,识别河流系统中污染物溢出源头的问题。为了解决这个问题,我们建议一个新的框架,该框架包括三个主要步骤:(i)泄漏检测,(ii)数据预处理和(iii)源识别。具体来说,我们应用了统计过程控制图来检测具有测量错误的污染物泄漏,同时将误报率保持在小于或等于用户指定的值。在检测到泄漏后,我们生成了一个非线性回归模型来估计观测值的突破曲线并导出估计曲线的特征向量。使用特征向量作为输入,使用传感器发出第一个警报的随机森林模型。该模型提供0到1之间的输出值,以表示每个候选位置是真正的泄漏源的可能性。这些可能性值使用户可以确定泄漏的强大候选位置。我们的框架的准确性已在美国乔治亚州的Altamaha河水系统的一部分上进行了测试。

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