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基于微机电系统(MEMS)的多功能加速度计的调频无线传输可行性

Feasibility of frequency-modulated wireless transmission for a multi-purpose MEMS-based accelerometer.

作者信息

Sabato Alessandro, Feng Maria Q

机构信息

Dipartimento di Ingegneria Meccanica, Energetica e Gestionale (DIMEG), Università della Calabria, Via P. Bucci 46C, Rende (CS), Italy.

Civil Engineering & Engineering Mechanics Department (CEEM), Columbia University, 500 W 120th St., New York, NY 10027, USA.

出版信息

Sensors (Basel). 2014 Sep 5;14(9):16563-85. doi: 10.3390/s140916563.

Abstract

Recent advances in the Micro Electro-Mechanical System (MEMS) technology have made wireless MEMS accelerometers an attractive tool for Structural Health Monitoring (SHM) of civil engineering structures. To date, sensors' low sensitivity and accuracy--especially at very low frequencies--have imposed serious limitations for their application in monitoring large-sized structures. Conventionally, the MEMS sensor's analog signals are converted to digital signals before radio-frequency (RF) wireless transmission. The conversion can cause a low sensitivity to the important low-frequency and low-amplitude signals. To overcome this difficulty, the authors have developed a MEMS accelerometer system, which converts the sensor output voltage to a frequency-modulated signal before RF transmission. This is achieved by using a Voltage to Frequency Conversion (V/F) instead of the conventional Analog to Digital Conversion (ADC). In this paper, a prototype MEMS accelerometer system is presented, which consists of a transmitter and receiver circuit boards. The former is equipped with a MEMS accelerometer, a V/F converter and a wireless RF transmitter, while the latter contains an RF receiver and a F/V converter for demodulating the signal. The efficacy of the MEMS accelerometer system in measuring low-frequency and low-amplitude dynamic responses is demonstrated through extensive laboratory tests and experiments on a flow-loop pipeline.

摘要

微机电系统(MEMS)技术的最新进展使无线MEMS加速度计成为土木工程结构健康监测(SHM)的一种有吸引力的工具。迄今为止,传感器的低灵敏度和精度——尤其是在非常低的频率下——严重限制了它们在大型结构监测中的应用。传统上,MEMS传感器的模拟信号在射频(RF)无线传输之前被转换为数字信号。这种转换会导致对重要的低频和低幅度信号灵敏度较低。为克服这一困难,作者开发了一种MEMS加速度计系统,该系统在RF传输之前将传感器输出电压转换为调频信号。这是通过使用电压-频率转换(V/F)而不是传统的模数转换(ADC)来实现的。本文介绍了一种MEMS加速度计系统原型,它由发射机和接收机电路板组成。前者配备有一个MEMS加速度计、一个V/F转换器和一个无线RF发射机,而后者包含一个RF接收机和一个用于解调信号的F/V转换器。通过在流动回路管道上进行的大量实验室测试和实验,证明了MEMS加速度计系统在测量低频和低幅度动态响应方面的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cecf/4208187/1bde0924fa52/sensors-14-16563f1.jpg

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