一种瞬变电磁测井信号基线漂移实时校正方法

Dang Bo, Chenlu Zhang, Xiang Zhang, L. Cheng
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引用次数: 1

摘要

经验模态分解方法可以消除井下环境变化引起的基线漂移,但由于末端效应的影响,难以实现实时分割处理。针对这一问题,提出了一种基于镜像延拓法的瞬变电磁测井信号基线漂移实时校正方法。该方法通过定位耦合在原始信号中的位置,以两个耦合的中间位置为终点,实时分段提取测井信号并进行校正。首先提取端点处的原始信号,对其镜像进行扩展;然后对扩展信号进行经验模态分解,去除高阶固有模态函数。在此基础上,根据原始信号端点的深度截断相应的延续点,然后重构信号。最后,重新选择原信号的下一段来消除基线漂移,并将校正后的信号依次拼接,最终实现对数信号基线漂移的实时分段校正。现场实测数据的处理与分析表明,本文所研究的方法能有效解决井下温度引起的瞬变电磁测井信号基线漂移问题,具有实时性、高效性和准确性等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A real-time correction method for baseline wander of transient electromagnetic logging signals
The empirical mode decomposition method can eliminate the baseline wander caused by the changes in the downhole environment, but it is difficult to achieve real-time segmentation processing due to the influence of the end effect. Aiming at this problem, this paper proposed a real-time correction method for baseline wander of transient electromagnetic logging signals based on mirror continuation method. In this method, by locating the position of the coupling in the original signal, and taking the middle position of the two couplings as the end point, the logging signal is extracted and corrected in real time and in sections. First, the original signal at the endpoint is extracted and its mirror image is extended. Then the extended signal is decomposed by empirical mode and the high-order intrinsic mode function is removed. On this basis, the corresponding continuation point is truncated according to the depth of the original signal endpoint and then the signal is reconstructed. Finally, the next segment of the original signal is reselected to eliminate the baseline wander and the corrected signals are successively spliced to finally realize the real-time segmented correction of the log signal baseline wander. The processing and analysis of field measured data show that the method studied in this paper can effectively solve the problem of transient electromagnetic logging signal baseline wander caused by downhole temperature, and has the advantages of real-time, high efficiency and accuracy.
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