基于联合降噪与互信息时延的埋地PE管成像定位
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1.西南石油大学电气信息学院成都610500;2.西南石油大学机电工程学院成都610500

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TU990.3; TB53; TN911.23

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成都市科技局技术创新研发项目(2025-YF05-00202-SN)、四川省科技计划项目 (2023ZHCG0020)、四川省国际港澳台科技创新合作项目(25GJHZ0475)资助


Imaging and location of buried PE pipes based on joint denoising and mutual information time delay
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1.College of Electrical and Information Engineering, Southwest Petroleum University, Chengdu 610500, China; 2.College of Mechanical and Electrical Engineering, Southwest Petroleum University Chengdu 610500, China

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    摘要:

    聚乙烯管道广泛用于能源输送及供水排水等关键领域,精准探测其位置对于保障城市安全具有重要意义。针对现有管道定位技术中存在噪声敏感和时延计算不准的问题,提出一种基于联合降噪与互信息时延的弹性波成像定位方法。首先,搭建实验平台并采集检波器接收信号;其次,采用集合经验模态分解联合小波阈值算法对信号进行降噪处理;然后,利用互信息函数法计算信号时延,并结合多条测线数据进行叠加成像以确定管道位置;最后,通过COMSOL仿真验证方法可行性,并对埋深为0.5与1 m的PE管道进行现场测试。实验结果表明,该方法所得管道平均定位误差分别为0.042和0.085 m,较未降噪条件下分别降低0.058和0.820 m;与互相关函数法和时域叠加法相比,该方法在0.5 m埋深下平均定位误差分别降低0.067和0.063 m,在1 m埋深下分别降低0.222和0.057 m。研究结果表明,该方法显著提升了管道定位精度,对复杂环境下的埋地PE管道探测具有重要的工程应用价值。

    Abstract:

    Polyethylene pipes are widely used in critical fields such as energy transmission and water supply and drainage. Accurate detection of their locations is of great significance for ensuring urban safety. In view of the problems of noise sensitivity and inaccurate time delay calculation in existing pipeline location technologies, this paper proposes an elastic wave imaging location method based on joint denoising and mutual information time delay. Firstly, an experimental platform is built and the signals received by the geophones are collected. Secondly, the signals are denoised by using the ensemble empirical mode decomposition combined with the wavelet threshold algorithm. Then, the time delay of the signals is calculated by the mutual information function method, and the pipeline location is determined by superimposing the data of multiple survey lines. Finally, the feasibility of the method is verified by COMSOL simulation, and field tests are conducted on PE pipes buried at depths of 0.5 and 1 m. The experimental results show that the average positioning errors of the pipelines obtained by the method in this paper are 0.042 and 0.085 m, respectively, which are reduced by 0.058 and 0.820 m compared with those without denoising. Compared with the cross-correlation function method and the time-domain superposition method, the average positioning errors of the method in this paper are reduced by 0.067 and 0.063 m at a depth of 0.5 m, and by 0.222 and 0.057 m at a depth of 1 m, respectively. The research results show that this method significantly improves the positioning accuracy of pipelines and has important engineering application value for the detection of buried PE pipes in complex environments.

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程吉祥,赵红英,葛亮,李志丹,肖小汀.基于联合降噪与互信息时延的埋地PE管成像定位[J].电子测量与仪器学报,2026,40(2):220-232

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