基于速度的地震传感器中MEMS加速度计的实现

Amalia C. Nur’aidha, S. Maryanto, D. Santoso
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引用次数: 2

摘要

微机电系统(MEMS)加速度计是常用的基于加速度的振动传感器。MEMS加速度计体积小,实现设计简单,价格相对便宜。但在某些应用领域,由于工作频率低且测量信号幅度小,例如在地震学中,基于速度的振动传感器通常比基于加速度的传感器更可取。在本研究中,利用MEMS加速度计器件MMA7361L开发了一种基于速度的振动传感器。利用积分器电路模块将MMA7361L的基于加速度的振动信号转换为基于速度的振动信号。该模块由带通滤波器和积分放大器组成。实验结果表明,所研制的传感器系统能够同时检测基于速度的低频和高频振动信号,效果良好。传感器系统的频率范围为0.02Hz至148Hz。它比检波器(地震传感器)的频率更宽,因此基于速度的MEMS传感器系统具有替代检波器的能力。
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Implementation of MEMS Accelerometer for Velocity-based Seismic Sensor
Micro Electro Mechanical System (MEMS) accelerometer is commonly used as acceleration-based vibration sensor. The MEMS accelerometer is small device, simple in the implementation design, and relatively inexpensive. But in some fields of application, due to low frequency operation and also small magnitude of the measured signal, for example in seismology, velocity-based vibration sensor is usually more desirable than acceleration-based sensor. In this research, a velocity-based vibration sensor has been developed using MEMS Accelerometer device e.g. MMA7361L. The acceleration-based vibration signal from the MMA7361L is converted into a velocity-based vibration signal by using an integrator circuit module. This module is assembled by using a band-pass filter and an integral-amplifier. The laboratory test shows that the developed sensor system could detect both low and high-frequency vibration signals in velocity-based with good result. The sensor system has a frequency range of 0.02Hz to 148Hz. It is wider frequency than the geophone (seismic sensor), thus the velocity-based MEMS sensor system has capability for geophone replacement.
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