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Development of acoustic sensor and signal processing technique.

机译:声学传感器和信号处理技术的发展。

摘要

Sewer flooding incidents in the UK are being increasingly associated with the presence of blockages. Blockages are difficult to deal with as although there are locations where they are more likely to occur, they do occur intermittently. In order to manage sewer blockage pro-actively sewer managers need to be able to identify the location of blockages promptly. Traditional CCTV inspection technologies are slow and relatively expensive so are not well suited to the rapid inspection of a network. This is needed if managers are to be able to address sewer blockages pro-actively. This thesis reports on the development of low-cost, rapidly deployable acoustic base sensor that will be able to survey live sewer pipes. The sensor emits short coded acoustic signals which are reflected from any defects of the wall of the underground pipes and recorded for future processing. The processing algorithms are based on the temporal windowing, deconvolution, Fourier, and intensity analysis so that the response can be linked directly to the location and property of the of the pipe deformation. The sensor was tested in a full scale sewer pipe in the laboratory and in few sites in UK, Austria and Netherlands and it was shown that it is able to discriminate between blockages and structural aspects of a sewer pipe such as a manhole and lateral connection. The anticipated cost is orders of magnitude lower than any current technique.
机译:英国的下水道洪水事件越来越多地与堵塞相关。堵塞很难处理,因为尽管在某些位置更容易发生堵塞,但它们确实会间歇性地发生。为了主动管理下水道堵塞,下水道管理者需要能够迅速确定堵塞的位置。传统的CCTV检查技术速度较慢且相对昂贵,因此不适合用于网络的快速检查。如果管理人员能够主动解决下水道堵塞,则需要这样做。这篇论文报道了低成本,可快速部署的声学基础传感器的开发,该传感器将能够测量活污水管道。传感器发出短编码的声波信号,该声波信号从地下管道壁的任何缺陷反射回来并记录下来,以备将来处理。处理算法基于时间窗,反卷积,傅立叶和强度分析,因此响应可以直接链接到管道变形的位置和属性。该传感器在实验室的全尺寸下水道中进行了测试,并在英国,奥地利和荷兰的几个地方进行了测试,结果表明该传感器能够区分下水道的堵塞和结构方面,例如人孔和侧向连接。预期成本比任何现有技术都要低几个数量级。

著录项

  • 作者

    Bin Ali Muhammad Tareq;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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