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一种基于MET/MEMS传感器组合的低噪声直流地震加速度计。

A Low-Noise DC seismic accelerometer based on a combination of MET/MEMS sensors.

作者信息

Neeshpapa Alexander, Antonov Alexander, Agafonov Vadim

机构信息

Center for Molecular Electronics, Moscow Institute of Physics and Technology, Moscow 117303, Russia.

出版信息

Sensors (Basel). 2014 Dec 26;15(1):365-81. doi: 10.3390/s150100365.

Abstract

Molecular-electronic transducers (MET) have a high conversion coefficient and low power consumption, and do not require precision mechanical components thus allowing the construction of cost- and power-efficient seismic accelerometers. Whereas the instrumental resolution of a MET accelerometer within the 0.1-100 Hz frequency range surpasses that of the best Micro-Electro Mechanical Systems (MEMS) and even some force-balanced accelerometers, the fundamental inability to register gravity or, in other words, zero frequency acceleration, significantly constrains the further spread of MET-based accelerometers. Ways of obviating this inherent zero frequency insensitivity within MET technology have so far, not been found. This article explores a possible approach to the construction of a hybrid seismic accelerometer combining the superb performance of a MET sensor in the middle and high frequency range with a conventional on chip MEMS accelerometer covering the lower frequencies and gravity. Though the frequency separation of a signal is widely used in various applications, the opposite task, i.e., the combining of two signals with different bandwidths is less common. Based on theoretical research and the analysis of actual sensors' performance, the authors determined optimal parameters for building a hybrid sensor. Description and results for implementation of the hybrid sensor are given in the Experimental section of the article. Completing a MET sensor with a cost-effective MEMS permitted the construction of a low noise DC accelerometer preserving the noise performance of a MET sensing element. The work presented herein may prove useful in designing other combined sensors based on different technologies.

摘要

分子电子传感器(MET)具有高转换系数和低功耗,并且不需要精密机械部件,因此可以制造出经济高效且节能的地震加速度计。虽然MET加速度计在0.1 - 100Hz频率范围内的仪器分辨率超过了最佳的微机电系统(MEMS),甚至超过了一些力平衡加速度计,但根本无法记录重力,或者换句话说,无法记录零频率加速度,这严重限制了基于MET的加速度计的进一步推广。到目前为止,尚未找到消除MET技术中这种固有的零频率不敏感性的方法。本文探讨了一种构建混合地震加速度计的可能方法,该方法将MET传感器在中高频范围内的卓越性能与覆盖低频和重力的传统片上MEMS加速度计相结合。虽然信号的频率分离在各种应用中广泛使用,但相反的任务,即将两个具有不同带宽的信号组合起来则不太常见。基于理论研究和对实际传感器性能的分析,作者确定了构建混合传感器的最佳参数。本文的实验部分给出了混合传感器的描述和实现结果。用具有成本效益的MEMS完善MET传感器,使得能够构建出一种低噪声直流加速度计,同时保留了MET传感元件的噪声性能。本文所介绍的工作可能对设计基于不同技术的其他组合传感器有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/edcc/4327024/2260137f3038/sensors-15-00365f1.jpg

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