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首页> 外文期刊>Bollettino di Geofisica Teorica ed Applicata >Statistical de-spiking and harmonic interference cancellation from surface-NMR signals via a state-conditioned filter and modified Nyman-Gaiser method
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Statistical de-spiking and harmonic interference cancellation from surface-NMR signals via a state-conditioned filter and modified Nyman-Gaiser method

机译:通过状态调节过滤器和改进的Nyman-Gaiser方法从表面NMR信号统计脱尖和谐波干扰消除

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摘要

The ability to recover subsurface information from surface-NMR measurements depends upon the signal quality which is adversely affected by ambient electromagnetic interference, i.e., power-line harmonics and impulse noises. We discuss two algorithms to isolate and then subtract these interferences. This study first tackles the use of the signal dependent rank-order mean filter for the detection and mitigation of noise spikes from highly corrupted surface-NMR signals. This algorithm estimates the likelihood the sample under inspection is corrupt relative to a threshold value derived from a statistical procedure and replaces a sample identified as impulse noise with an appropriate value. Then, the removal of power-line harmonics is implemented through a linear adaptive method, called a modified frequency-estimation approach stemming from the estimator proposed by Nyman-Gaiser. To verify the performance of the proposed algorithms to eliminate harmonics and spikes, the methods are tested on synthetic signals embedded in artificial noise and noise-only recordings derived from surface-NMR field measurements and a real data set. The results from the numerical simulations reveal an output signal-to-noise ratio increase with an accompanying enhancement in recovery of the surface-NMR signal parameters. Close agreement is also observed between the results of the field example and a borehole located at the sounding.
机译:从表面-NMR测量中恢复地下信息的能力取决于由环境电磁干扰的不利影响的信号质量,即电源线谐波和脉冲噪声。我们讨论了两个算法来隔离,然后减去这些干扰。本研究首先解决信号依赖性等级滤波器的使用,以便从高度损坏的表面NMR信号检测和减轻噪声尖峰。该算法估计,相对于从统计过程导出的阈值,并且将样本替换为具有适当值的脉冲噪声的阈值,该算法估计是损坏的。然后,通过线性自适应方法来实现电力线谐波,称为来自Nyman-Gaiser提出的估计器的修改频率估计方法。为了验证所提出的算法来消除谐波和尖峰的性能,对嵌入人工噪声的合成信号和唯一噪声录制的方法进行了测试,该方法来自表面NMR场测量和实际数据集。来自数值模拟的结果揭示了输出信噪比随着表面-NMR信号参数恢复的伴随增强而增加。在现场示例的结果和位于探测器的钻孔之间也观察到密切一致。

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