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Confidence Limit Analysis of Water Distribution Systems Based on a Least Squares Loop Flows State Estimation Technique

机译:基于最小二乘环流状态估计技术的配水系统置信极限分析

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摘要

This paper presents a novel algorithm for uncertainty quantification in water distribution systems, which is termed also Confidence Limit Analysis (CLA), in the context of a Least Squares (LS) state estimator based on the loop corrective flows and the variation of nodal demands as state variables. The confidence limits predicted with the novel algorithm called Error Maximization (EM) method are evaluated with respect to two other more established CLA algorithms based on an Experimental Sensitivity Matrix (ESM) and on a sensitivity matrix obtained with the LS nodal heads equations state estimator. The predicted confidence limits show that the novel EM algorithm is comparable to the other CLA algorithms shown in the paper and due to its computational efficiency renders it suitable for online decision support systems for water distribution systems.
机译:本文提出了一种新的用于供水系统不确定性量化的算法,也称为置信限度分析(CLA),这是在最小二乘(LS)状态估计器的背景下,该估计器基于回路校正流量和节点需求变化,如状态变量。相对于另外两个基于实验灵敏度矩阵(ESM)和通过LS节点头方程状态估计器获得的灵敏度矩阵的更成熟的CLA算法,评估了用称为误差最大化(EM)方法的新颖算法预测的置信极限。预测的置信度极限表明,新颖的EM算法可与本文中显示的其他CLA算法相提并论,并且由于其计算效率高,使其适合于配水系统的在线决策支持系统。

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