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Frontiers of Mechanical Engineering

ISSN 2095-0233

ISSN 2095-0241(Online)

CN 11-5984/TH

邮发代号 80-975

2019 Impact Factor: 2.448

Frontiers of Mechanical Engineering in China  2006, Vol. 1 Issue (1): 106-110   https://doi.org/10.1007/s11465-005-0016-5
  本期目录
Digital Readout System for Micromachined Gyroscope and Analysis for its Demodulation Algorithm
Digital Readout System for Micromachined Gyroscope and Analysis for its Demodulation Algorithm
ZHOU Bin, GAO Zhong-yu, CHEN Huai, ZHANG Rong, CHEN Zhi-yong
Department of Precision Instruments and Mechanology, Tsinghua University Beijing 100084, China;
 全文: PDF(170 KB)  
Abstract:A new digital readout system for micromachined gyroscope has been proposed to implement flexible parameter adjustment, improve the control performance of gyroscope, and make error compensation. By digitalizing the output of the gyroscope, this system uses a floating-type digital signal processor (DSP) to process the signal demodulation and achieve the feedback control of the gyroscope. Therefore, the small change of capacitance in the micromachined gyroscope can be detected. A new demodulation algorithm of least mean square demodulation (LMSD) has been developed inside DSP. Simulation and measurement results show that LMSD can improve 29% of the noise performance compared with the typical multiplication method. In air pressure, a kind of vibration-wheel micromachined gyroscope has achieved a noise level of 0.0073 deg s-1z(z-1/2 over the 100-Hz bandwidth by using this digital readout technology.
出版日期: 2006-03-05
 引用本文:   
. Digital Readout System for Micromachined Gyroscope and Analysis for its Demodulation Algorithm[J]. Frontiers of Mechanical Engineering in China, 2006, 1(1): 106-110.
ZHOU Bin, GAO Zhong-yu, CHEN Huai, ZHANG Rong, CHEN Zhi-yong. Digital Readout System for Micromachined Gyroscope and Analysis for its Demodulation Algorithm. Front. Mech. Eng., 2006, 1(1): 106-110.
 链接本文:  
https://academic.hep.com.cn/fme/CN/10.1007/s11465-005-0016-5
https://academic.hep.com.cn/fme/CN/Y2006/V1/I1/106
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