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PROJECTIVE NOISE REDUCTION ALGORITHM FOR NEGATIVE PRESSURE WAVE SIGNAL PROCESSING

机译:负压波信号处理的投影降噪算法

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摘要

The appearance of a rupture, leak or damage in the long-distance oil & gas pipeline, which could cause a leak, usually generates a non-linear & chaotic negative pressure wave signal. By properly interpreting the negative pressure wave signature, it is possible to detect a leak along the pipeline. Most traditional noise reduction methods are established based on the linear system, which are not in line with the actual non-linear & chaotic situation. Therefore, the weak negative pressure wave signals, generated by small leaks, are often filtered out and cause false alarm and failure alarm. In order to resolve the problem, this paper uses the non-linear projective algorithm for noise reduction. First, the weak negative pressure wave signal series would be reconstructed using delay coordinates, in the high dimensional phase space, the background signal, the negative pressure wave signal and the noise signal are separated into different sub-spaces. Through the reconstruction of sub-spaces, the weak pressure wave signal can be isolated from the background signal as well as the random noise component reduced.
机译:长距离油气管道中出现破裂,泄漏或损坏的现象,可能会导致泄漏,通常会产生非线性且混乱的负压波信号。通过正确解释负压波信号,可以检测沿管道的泄漏。大多数传统的降噪方法都是基于线性系统建立的,与实际的非线性和混沌情况不符。因此,由小泄漏产生的弱的负压波信号经常被滤除,并引起误报和故障报警。为了解决该问题,本文采用非线性投影算法进行降噪。首先,将使用延迟坐标重建弱的负压波信号序列,在高维相空间中,将背景信号,负压波信号和噪声信号分为不同的子空间。通过子空间的重构,可以将弱压力波信号与背景信号隔离,并减少了随机噪声分量。

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  • 来源
  • 会议地点 Calgary(CA);Calgary(CA)
  • 作者单位

    Research Center of Oil Gas Safety Engineering Technology, China University of Petroleum, Beijing;

    Research Center of Oil Gas Safety Engineering Technology, China University of Petroleum, Beijing;

    Research Center of Oil Gas Safety Engineering Technology, China University of Petroleum, Beijing;

    Research Center of Oil Gas Safety Engineering Technology, China University of Petroleum, Beijing;

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  • 正文语种 eng
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