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Buried Wireless Sensor Network for Monitoring Pipeline Joint Leakage Caused by Large Ground Movements

机译:埋入式无线传感器网络,用于监视由大地面运动引起的管道接头泄漏

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This paper proposes an innovative buried wireless sensor network (B-WSN) system for detecting leakage from pipeline joints caused by large ground movements such as earthquakes. The key challenge to any such system is that electromagnetic (EM) signal strength becomes significantly attenuated over short distances when wireless devices are buried in certain materials-notably soil, this paper's focus. After simulation results indicated that the EM radio frequency was a key factor influencing the depth through which a signal can propagate in soil, the B-WSN system was developed, which includes a high-performance sub-1-GHz transceiver that utilizes a low-power band frequency at 433 MHz. Field testing indicated that the BWSN can achieve a penetration depth of 2.13 m. The system configuration includes a radio link budget of 120 dB, transmit power of 26 dBm, receive sensitivity of -125dBm, and omnidirectional antenna gain of 1.5 dBi. The system works on multihop topology, meaning that each sensing node also acts as a relay node to assist other nodes buried deeper in the ground with data communication. For purposes of this paper, four hops were used, and this made wireless communication possible at an overall burial depth of 8 m. As such, the proposed B-WSN system would be compatible with most buried utility pipelines. The conducted full-scale pipeline-rupture experiment results further verified that the system can, in close to real time, pinpoint locations and subsequent patterns of water leakage caused by severe ground deformation. The findings also exemplify how the B-WSN system could aid structural evaluation of pipelines that are likely to experience large ground deformation. The average packet-loss rate was less than 0.1% during the experiment, and in terms of average power consumption, each sensing node used less than 26.5 mA per 30 s data-reporting period. Thus, the sensing nodes can be expected to function continuously for 27 days if powered by four standard industrial D-cell batteries, or for more than 2 years if the data-reporting period is changed to 1 h. (C) 2019 American Society of Civil Engineers.
机译:本文提出了一种创新的埋入式无线传感器网络(B-WSN)系统,用于检测由大的地面运动(例如地震)引起的管道接头泄漏。任何此类系统的主要挑战是,当无线设备埋入某些材料(尤其是土壤)中时,电磁(EM)信号强度会在短距离内显着衰减,这是本文的重点。在模拟结果表明EM射频是影响信号在土壤中传播的深度的关键因素之后,开发了B-WSN系统,该系统包括一个高性能的1-GHz收发器,该收发器利用了低433 MHz的功率频带频率。现场测试表明,BWSN可以达到2.13 m的穿透深度。该系统配置包括120 dB的无线电链路预算,26 dBm的发射功率,-125dBm的接收灵敏度以及1.5 dBi的全向天线增益。该系统在多跳拓扑上工作,这意味着每个感测节点还充当中继节点,以协助埋在地下更深的其他节点进行数据通信。出于本文的目的,使用了四跳,这使得在8 m的总埋深下实现无线通信成为可能。这样,提出的B-WSN系统将与大多数地下公用管线兼容。进行的全面管道破裂实验结果进一步证实,该系统可以实时,精确地确定由严重的地面变形引起的漏水位置和后续模式。这些发现还例证了B-WSN系统如何帮助可能经历较大地面变形的管道的结构评估。在实验过程中,平均丢包率小于0.1%,就平均功耗而言,每30 s的数据报告周期,每个传感节点所使用的电流小于26.5 mA。因此,如果由四个标准工业D电池供电,则传感节点可以连续工作27天,或者如果数据报告周期更改为1 h,则传感节点可以连续工作2年以上。 (C)2019美国土木工程师学会。

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  • 来源
    《Journal of Pipeline Systems Engineering and Practice》 |2019年第4期|04019023.1-04019023.11|共11页
  • 作者单位

    Natl Cent Univ Dept Civil Engn Zhongda Rd Taoyuan 32001 Taiwan;

    Wisen Innovat Ltd Taihu Int Hitech Zone Off D501 530 Mansion Wuxi 214135 Jiangsu Peoples R China;

    Univ Calif Berkeley Dept Civil & Environm Engn Berkeley CA 94720 USA;

    Univ Colorado Dept Civil Environm & Architectural Engn 1111 Engn Dr UCB 428 ECOT 441 Boulder CO 80309 USA;

    Royal Thai Army Univ Corps Engineers Engn Mil Sch Mueang Ratchaburi 70000 Ratchaburi Thailand;

    Thornton Tomasetti 51 Madison Ave New York NY 10010 USA;

    Cornell Univ Sch Civil & Environm Engn Geotech Lifelines Grp B02 Thurston Hall 130 Hollister Dr Ithaca NY 14853 USA;

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