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一种基于现场可编程门阵列(FPGA)的多通道钻孔应变测量与采集系统。

A Multi-Channel Borehole Strain Measurement and Acquisition System Based on FPGA.

作者信息

Xu Xin, Chen Zheng, Li Hong, Zhan Weiwei, Wang Wenbo, Dong Yunkai, Wu Liheng, Li Xiang

机构信息

National Institute of Natural Hazards, Beijing 100085, China.

School of Emergency Management Science and Engineering, University of Chinese Academy of Sciences, Beijing 100049, China .

出版信息

Sensors (Basel). 2023 Aug 6;23(15):6981. doi: 10.3390/s23156981.

Abstract

In this study, an FPGA(Field Programmable Gate Array)-based borehole strain measurement system was designed that makes extensive use of digital signal processing operations to replace analog circuits. Through the formidable operational capability of FPGA, the sampled data were filtered and denoised to improve the signal-to-noise ratios. Then, with the goal of not reducing observational accuracy, the signal amplification circuit was removed, the excitation voltage was reduced, and the dynamic range of the primary adjustments was expanded to 130 dB. The system's online compilation function made it more flexible to changes in measurement parameters, allowing it to adapt to various needs. In addition, the efficiency of the equipment use was enhanced. The actual observational results showed that this study's FPGA-based borehole strain measurement system had a voltage resolution higher than 1 μV. Clear solid tides were successfully recorded in low-frequency bands, and seismic wave strain was accurately recorded in high-frequency bands. The arrival times and seismic phases of the seismic waves S and P were clearly recorded, which met the requirements for geophysical field deformation observations. Therefore, the system proposed in this study is of major significance for future analyses of geophysical and crust deformation observations.

摘要

在本研究中,设计了一种基于现场可编程门阵列(FPGA)的钻孔应变测量系统,该系统大量使用数字信号处理操作来取代模拟电路。借助FPGA强大的运算能力,对采样数据进行滤波和降噪处理,以提高信噪比。然后,在不降低观测精度的目标下,去除了信号放大电路,降低了激励电压,并将一次调整的动态范围扩大到130 dB。该系统的在线编译功能使测量参数的更改更加灵活,使其能够适应各种需求。此外,提高了设备的使用效率。实际观测结果表明,本研究基于FPGA的钻孔应变测量系统具有高于1 μV的电压分辨率。在低频段成功记录到清晰的固体潮,在高频段准确记录到地震波应变。清晰记录到地震波S和P的到达时间和震相,满足地球物理场形变观测的要求。因此,本研究提出的系统对未来地球物理和地壳形变观测分析具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f9f/10422279/6b33144d792c/sensors-23-06981-g001.jpg

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