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Use of modelling error dynamics for the calibration of water distribution systems

机译:使用建模误差动力学来校准供水系统

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摘要

The calibration of a water distribution system remains a complex task. Leakages create additional difficulties if their proportion is high. Not all leakages are real. A part of them are apparent leakages. An optimization procedure is proposed to obtain the proportions of real and apparent leakages. The distribution of the leakages over a WDS may be made easier by analyzing the dependence of modelling errors on water flow. It is suggested that pressure measurements should be ranked according to the closeness of measurement to the water source and that modelling errors should be analysed separately for the measurements of different order (from the first to the highest). The advantage of this approach is that the analysis is confined within points of measurements of one order and it allows to redistribute fluxes of leakages (real and apparent) more reliably. Nonlinear optimization with linear constraints is used for the redistribution of leakages over a WDS. The methodology proposed allows to exclude the influence of systematic errors on the result of calibration.
机译:供水系统的校准仍然是一项复杂的任务。如果泄漏所占比例很高,则会造成更多困难。并非所有泄漏都是真实的。其中一部分是明显的泄漏。提出了一种优化程序来获得实际和视在泄漏的比例。通过分析建模误差对水流的依赖性,可以使WDS上的泄漏分布更容易。建议应根据与水源的接近程度对压力测量结果进行排名,并应针对不同阶次(从第一个到最高)的测量结果分别分析建模误差。这种方法的优势在于,分析被限制在一个量级的测量点之内,并且可以更可靠地重新分配泄漏通量(实际泄漏和明显泄漏)。具有线性约束的非线性优化用于在WDS上重新分配泄漏。所提出的方法允许排除系统误差对校准结果的影响。

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