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Accurate Spectral Estimation Technique Based on Decimated Linear Predictor for Leak Detection in Waterworks

机译:基于抽取线性预测测量的准确光谱估计技术在水上泄漏检测

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摘要

Rural pipelines dedicated to water distribution, that is, waterworks, are essential for agriculture, notably plantations and greenhouse cultivation. Water is a primary resource for agriculture, and its optimized management is a key aspect. Saving water dispersion is not only an economic problem but also an environmental one. Spectral estimation of leakage is based on processing signals captured from sensors and/or transducers generally mounted on pipelines. There are different techniques capable of processing signals and displaying the actual position of leaks. Not all algorithms are suitable for all signals. That means, for pipelines located underground, for example, external vibrations affect the spectral response quality; then, depending on external vibrationsoises and flow velocity within pipeline, one should choose a suitable algorithm that fits better with the expected results in terms of leak position on the pipeline and expected time for localizing the leak. This paper presents findings related to the application of a decimated linear prediction (DLP) algorithm for agriculture and rural environments. In a certain manner, the application also detects the hydrodynamics of the water transportation. A general statement on the issue, DLP illustration, a real application and results are also included.
机译:农村管道致力于水分布,即水工,对农业至关重要,特别是种植园和温室培养。水是农业的主要资源,其优化的管理是一个关键方面。节约水分散不仅是经济问题,而且是一个环境的。泄漏的光谱估计基于从传感器捕获的处理信号和/或通常安装在管道上的换能器。有不同的技术能够处理信号并显示泄漏的实际位置。并非所有算法都适用于所有信号。这意味着,对于位于地下的管道,例如,外部振动会影响光谱响应质量;然后,根据管道内的外部振动和噪声和流速,应该选择合适的算法,该算法更好地利用预期的导致管道上的泄漏位置和预期泄漏的时间。本文介绍了与农业和农村环境的抽取线性预测(DLP)算法应用相关的结果。以某种方式,应用还检测水运输的流体动力学。还包括关于问题,DLP图,实际应用和结果的一般陈述。

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