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SFTD 算法优化基于停留时间差通量门读出策略的性能

A SFTD Algorithm for Optimizing the Performance of the Readout Strategy of Residence Time Difference Fluxgate.

机构信息

Key Laboratory of Geophysical Exploration Equipment, Ministry of Education (Jilin University), Changchun 130026, China.

College of Instrumentation and Electrical Engineering, Jilin University, Changchun 130021, China.

出版信息

Sensors (Basel). 2018 Nov 16;18(11):3985. doi: 10.3390/s18113985.

Abstract

Residence time difference (RTD) fluxgate sensor is a potential device to measure the DC or low-frequency magnetic field in the time domain. Nevertheless, jitter noise and magnetic noise severely affect the detection result. A novel post-processing algorithm for jitter noise reduction of RTD fluxgate output strategy based on the single-frequency time difference (SFTD) method is proposed in this study to boost the performance of the RTD system. This algorithm extracts the signal that has a fixed frequency and preserves its time-domain information via a time⁻frequency transformation method. Thereby, the single-frequency signal without jitter noise, which still contains the ambient field information in its time difference, is yielded. Consequently, compared with the traditional comparator RTD method (CRTD), the stability of the RTD estimation (in other words, the signal-to-noise ratio of residence time difference) has been significantly boosted with sensitivity of 4.3 μs/nT. Furthermore, the experimental results reveal that the RTD fluxgate is comparable to harmonic fluxgate sensors, in terms of noise floor.

摘要

停留时间差(RTD)磁通门传感器是一种潜在的用于测量时域中直流或低频磁场的设备。然而,抖动噪声和磁噪声严重影响检测结果。本研究提出了一种基于单频时间差(SFTD)方法的 RTD 磁通门输出抖动噪声降低的新后处理算法,以提高 RTD 系统的性能。该算法通过时频变换方法提取具有固定频率的信号,并保留其时域信息。从而得到没有抖动噪声的单频信号,其在时间差中仍然包含环境场信息。因此,与传统的比较器 RTD 方法(CRTD)相比,RTD 估计的稳定性(换句话说,即停留时间差的信噪比)得到了显著提高,灵敏度为 4.3 μs/nT。此外,实验结果表明,RTD 磁通门在噪声底方面可与谐波磁通门传感器相媲美。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/53aa/6263985/0bbedd6f649a/sensors-18-03985-g001.jpg

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