Chen Lianhong, Sun Zhenyuan, Li Guanglei, Chen Deyong, Wang Junbo, Chen Jian
State Key Laboratory of Transducer Technology, Institute of Electronics, Chinese Academy of Sciences, 100190 Beijing, China.
School of Electronic, Electrical and Communication Engineering, Chinese Academy of Sciences, 100190 Beijing, China.
Sensors (Basel). 2018 Mar 31;18(4):1047. doi: 10.3390/s18041047.
A monolithic electrochemical micro seismic sensor capable of monitoring three-axial vibrations was proposed in this paper. The proposed micro sensor mainly consisted of four sensing units interconnected within flow channels and by interpreting the voltage outputs of the sensing units, vibrations with arbitrary directions can be quantified. The proposed seismic sensors are fabricated based on MEMS technologies and characterized, which produced sensitivities along , , and axes as 2473.2 ± 184.5 V/(m/s), 2261.7 ± 119.6 V/(m/s), and 3480.7 ± 417.2 V/(m/s) at 30 Hz. In addition, the vibrations in -, -, and - planes were applied to the developed seismic sensors, leading to comparable monitoring results after decoupling calculations with the input velocities. Furthermore, the results have shown its feasibilities for seismic data recording.
本文提出了一种能够监测三轴振动的整体式电化学微地震传感器。所提出的微传感器主要由四个传感单元组成,这些传感单元在流动通道内相互连接,通过解释传感单元的电压输出,可以量化任意方向的振动。所提出的地震传感器基于微机电系统(MEMS)技术制造并进行了表征,在30 Hz时,其沿x、y和z轴的灵敏度分别为2473.2±184.5 V/(m/s)、2261.7±119.6 V/(m/s)和3480.7±417.2 V/(m/s)。此外,将x -、y -和z -平面内的振动应用于所开发的地震传感器,在与输入速度进行解耦计算后,得到了可比的监测结果。此外,结果表明了其用于地震数据记录的可行性。