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Empirical Modeling of Acoustic Signal Attenuation in Municipal Sewer Pipes for Condition Monitoring Applications

机译:用于状态监测应用的市政污水管道中声信号衰减的经验模型

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An important challenge for a smart city is to prevent occurrence of sewer system overflows (SSOs) that can degrade the environment and pose a public health hazard. To prevent SSOs, timely detection and cleaning of clogged sewer pipes is essential. Present industry standard to detect sewer blockage is based on passing a close circuit television (CCTV) mounted crawler through the pipes. An operator observes the video and annotates it based on the condition of a pipe. This system is complex, expensive and man-hour intensive. There is a need to develop an acoustic based method that can replace the traditional CCTV based system. Clogged pipes cause severe attenuation on acoustic signals which can be used as a measure of existence and extent of blockage. This study reports an empirical based approach to determine acoustic signal attenuation in sewer pipes. Extensive field measurements were made in Charlotte, North Carolina to collect in-pipe signal propagation data from installed sewers to support this work. The findings were used to justify further research and development by a technology startup company that successfully produced an acoustic based sewer line blockage detection system.
机译:智慧城市面临的一项重要挑战是防止下水道系统溢流(SSO)的发生,该溢流会降低环境质量并危害公共健康。为了防止SSO,必须及时发现并清理下水道堵塞的管道。用于检测下水道堵塞的当前行业标准是基于将安装有闭路电视(CCTV)的履带穿过管道。操作员观察视频并根据管道状况对其进行注释。该系统复杂,昂贵并且需要大量的工时。需要开发一种可以替代传统的基于CCTV的系统的基于声学的方法。堵塞的管道会在声信号上造成严重衰减,可将其用作存在和阻塞程度的度量。这项研究报告了一种基于经验的方法来确定下水道中的声信号衰减。在北卡罗来纳州的夏洛特进行了广泛的现场测量,以收集来自已安装的下水道的管道内信号传播数据,以支持这项工作。这项发现被一家技术初创公司用来证明进一步研发的合理性,该公司成功生产了基于声学的下水道堵塞检测系统。

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