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Design of a Matching Network for a High-Sensitivity Broadband Magnetic Resonance Sounding Coil Sensor

机译:高灵敏度宽带磁共振测深线圈传感器匹配网络的设计

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摘要

The magnetic resonance sounding (MRS) technique is a non-invasive geophysical method that can provide unique insights into the hydrological properties of groundwater. The Cu coil sensor is the preferred choice for detecting the weak MRS signal because of its high sensitivity, low fabrication complexity and low cost. The tuned configuration was traditionally used for the MRS coil sensor design because of its high sensitivity and narrowband filtering. However, its narrow bandwidth may distort the MRS signals. To address this issue, a non-tuned design exhibiting a broad bandwidth has emerged recently, however, the sensitivity decreases as the bandwidth increases. Moreover, the effect of the MRS applications is often seriously influenced by power harmonic noises in the developed areas, especially low-frequency harmonics, resulting in saturation of the coil sensor, regardless of the tuned or non-tuned configuration. To solve the two aforementioned problems, we propose a matching network consisting of an LC broadband filter in parallel with a matching capacitor and provide a design for a coil sensor with a matching network (CSMN). The theoretical parameter calculations and the equivalent schematic of the CSMN with noise sources are investigated, and the sensitivity of the CSMN is evaluated by the Allan variance and the signal-to-noise ratio (SNR). Correspondingly, we constructed the CSMN with a 3 dB bandwidth, passband gain, normalized equivalent input noise and sensitivity (detection limit) of 1030 Hz, 4.6 dB, 1.78 nV/(Hz)1/2 @ 2 kHz and 3 nV, respectively. Experimental tests in the laboratory show that the CSMN can not only improve the sensitivity, but also inhibit the signal distortion by suppressing power harmonic noises in the strong electromagnetic interference environment. Finally, a field experiment is performed with the CSMN to show a valid measurement of the signals of an MRS instrument system.
机译:磁共振探测(MRS)技术是一种非侵入性的地球物理方法,可以为地下水的水文特性提供独特的见识。铜线圈传感器具有较高的灵敏度,较低的制造复杂度和较低的成本,因此是检测弱MRS信号的首选。由于其高灵敏度和窄带滤波,传统上将调谐配置用于MRS线圈传感器设计。但是,其窄带宽可能会使MRS信号失真。为了解决这个问题,近来出现了具有宽带宽的非调谐设计,但是,灵敏度随着带宽的增加而降低。此外,MRS应用的效果通常会受到发达地区的电力谐波噪声(尤其是低频谐波)的严重影响,从而导致线圈传感器饱和,而无论调谐或非调谐配置如何。为了解决上述两个问题,我们提出了一种由LC宽带滤波器与匹配电容器并联组成的匹配网络,并为具有匹配网络(CSMN)的线圈传感器提供了一种设计。研究了带有噪声源的CSMN的理论参数计算和等效原理图,并通过Allan方差和信噪比(SNR)评估了CSMN的灵敏度。相应地,我们构造了具有3 dB带宽,通带增益,归一化等效输入噪声和1030 Hz,4.6 dB,1.78 nV /(Hz) 1/2 @ 2的灵敏度(检测极限)的CSMN。分别为kHz和3 nV。实验室实验表明,CSMN不仅可以提高灵敏度,而且可以通过抑制强电磁干扰环境中的电源谐波噪声来抑制信号失真。最后,使用CSMN进行了现场实验,以显示对MRS仪器系统信号的有效测量。

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