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A comprehensive data quality evaluation method for the currents of marine controlled-source electromagnetic transmitters based on the analytic hierarchy process

机译:基于分析层次过程的海洋控制源电磁发射机电流的全面数据质量评价方法

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We present a quality control methodology for the currents of marine controlled-source electromagnetic transmitters . The quality level of the transmitting current directly affects the signal-to-noise ratio (SNR) of the electromagnetic-field data, as received by a multicomponent electromagnetic receiver from the seabed. Although the transmitting-current stability is sufficient under normal circumstances, the SNR of the received signal can change owing to factors such as outside noise. In some emergency cases such as instrument failure or a sudden increase in electromagnetic interference that we are not aware of, the frequency and properties of the transmitting current, such as its size and waveform, may change. The traditional current monitoring and data playback tools fail to detect and evaluate the anomalies well and in a timely manner, which introduces considerable errors in the later data-processing procedure. Pertaining to these issues, this paper proposes a comprehensive quality evaluation method for the transmitting current. The proposed algorithm, based on the analytic hierarchy process, is first used to analyze five current stability parameters – current frequency, positive amplitudes, negative amplitudes, discrepancy of ideal waveform, and waveform repetition – and then to define the harmonic energy and calculate the quality of transmitting current (QTC) index of the final data to assess the quality of the transmitting current comprehensively. The results of a marine experiment performed in 2016 show that the algorithm can identify abnormal current data and quantitatively evaluate the current conditions. Under normal circumstances, the QTC index is less than 2%. The key findings are that the QTC index changes to more than 4% and some curvilinear features are observed if the transmitting-current quality is poor. These results will provide a positive, significant guide for the evaluation and monitoring of transmitting-current data in marine experiments.
机译:我们为船用控制源电磁变送器的电流提出了一种质量控制方法。发射电流的质量水平直接影响电磁场数据的信噪比(SNR),由来自海底的多组分电磁接收器接收的电磁场数据。尽管在正常情况下发射电流稳定性足够,但是接收信号的SNR可以由于诸如外部噪声之类的因素而变化。在一些紧急情况下,例如仪器故障或电磁干扰的突然增加,我们不知道,传输电流的频率和性质,例如其大小和波形,可能会改变。传统的电流监控和数据播放工具无法良好地检测和评估异常,并及时地评估异常,这在后面的数据处理过程中引入了相当大的错误。本文与这些问题有关,提出了一种用于传输电流的全面质量评估方法。所提出的基于分析层次处理的算法首先用于分析五个电流稳定参数 - 电流频率,正幅度,负幅度,理想波形的差异,以及波形重复 - 然后定义谐波能量并计算质量发送最终数据的电流(QTC)索引,以综合评估发射电流的质量。 2016年进行的海洋实验结果表明,该算法可以识别异常电流数据并定量评估当前条件。在正常情况下,QTC指数小于2%。关键发现是,如果发射电流质量差,则QTC指数变为超过4%并观察到一些曲线,并且会出现一些曲线特征。这些结果将为船舶实验中的透射电流数据进行评估和监测,提供积极的重要指南。

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