基于声学分析方法的管道堵塞检测与监测

Phattaleeya Mabpa, Piyasawat Navaratana Na Ayudhya, J. Kunthong
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引用次数: 0

摘要

污水管道堵塞是造成污水溢流的主要问题之一,造成严重的环境问题和财产损失。这项工作提出了基于声学分析的堵塞管道检测和监测方法,以识别管道堵塞的发生情况和堵塞程度,从而降低SSO问题带来的风险。该技术是将振动扬声器连接在管道上作为声源。通过安装在管道另一侧的麦克风,通过读取管道谐振频率的变化来检测管道是否被堵塞。利用快速傅里叶变换(FFT)对测量信号的谐振频率进行表征。采用补偿线对频率响应进行归一化,便于声学分析。实验结果表明,管道堵塞时共振频率下降,声压级降低。此外,本文提供的技术提供了小而不复杂的数据,使任何分类方法都可以在今后的工作中更容易地识别管道堵塞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Clogged Pipe Detection and Monitoring by Using Acoustic Analysis Methodology
Clogged sewer pipelines are one of the main problems that cause Sanitary Sewer Overflow ( SSO) which leads to serious environmental issues and property damage. This work presented clogged pipe detection and monitoring methods based on acoustic analysis to identify pipe clogged occurrence and degree of blockage that can be mitigating the risks from SSO’s problems. The technique is to attach the vibration speaker on the pipe as an acoustic source. The clogged by blockage will be detected by reading the change in the pipe resonance frequency via the microphone installed on the other side of the pipeline. The resonance frequency of the measured signals was characterized by Fast Fourier Transforms (FFT). Compensation based line was used to normalize the frequency responses for easier acoustic analysis. The experiments have indicated the resonance frequency shifting down and Sound Pressure Level (SPL) decreasing when pipe clogged. Moreover, this paper provided the technique that offers small and noncomplex data which any classification method can identify pipe clogged easier in future work.
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