Application and Research of High Precision Data Acquisition for Laser Gyro
Abstract
With the wider and wider application of laser gyro in the high precision strapdown inertial navigation system, high precision data acquisition and processing is becoming more and more important. In this paper, the output signal of the laser gyro characteristics are divided, FPGA is used to measure the signal acquisition demodulation, frequency multiplication, counting and other functions of the laser gyro signal acquisition. FIR filtering algorithm is used in DSP to extract the angular velocity signal.
Keywords
Full Text:
UntitledReferences
Gao, B. L., & Li, S. T. (1984). Laser gyro. National University of Defense Technology Press.
Gao, Y., & Luo, Q. F. (2013). Research and implementation of transplant method based on DSP28335 program. Electronic Measurement Technology, (3), 84-88.
Lü, Y. H., & Cui, Z. X. (2004). Analysis and processing of ring laser gyroscope signal. Chinese Journal of Sensors and Actuators, (2), 249-251.
Tang, B., Li, J. M., & Li, S. Z. (2013). High speed accurate demodulation system of laser gyro signal based on FPGA. Application of Electronic Technology, (3), 74-76
Wei, J. C., Tuo, Z. H., & Wu, M. P. (2006). Study on the dynamic characteristics of the mechanically dithered ring laser gyro. Journal of Chinese Inertial Technology, (6), 69-72.
Xu, G. Y. (2005). Research and development of CPU plate for laser gyro strapdown inertial navigation system based on DSP and CPLD technology (Master thesis). National University of Defense Technology.
Yan, G. M. (2007). Influence of the whole period sampling on the attitude calculation of the strapdown inertial navigation system. Chinese Journal of Sensors and Actuators, (10), 2268-2271.
Yan, G. M., Yan, W. S., Xu, D. M., Luo, Y. S., & Ma, J. W. (2008). Study on the correction of the whole period sampling in the laser gyro strapdown inertial navigation system. Chinese Journal of Sensors and Actuators, (6), 998-1001.
Zhang, P. F., & Long, X. W. (2005). Primary research on temperature compensation of mechanically dithered RLG’s bias. Laser Journal, (5), 83-84.
Zhang, Y. (2005). Analysis and design of data acquisition circuit for laser gyro strapdown inertial navigation system (Master thesis). National University of Defense Technology.
DOI: http://dx.doi.org/10.3968/8664
DOI (Untitled): http://dx.doi.org/10.3968/%25x
Refbacks
- There are currently no refbacks.
Copyright (c) 2016 Jianzhong WANG
This work is licensed under a Creative Commons Attribution 4.0 International License.
Reminder
We are currently accepting submissions via email only.
The registration and online submission functions have been disabled.
Please send your manuscripts to ans@cscanada.net,or ans@cscanada.org for consideration. We look forward to receiving your work.
Articles published in Advances in Natural Science are licensed under Creative Commons Attribution 4.0 (CC-BY).
ADVANCES IN NATURAL SCIENCE Editorial Office
Address: 1055 Rue Lucien-L'Allier, Unit #772, Montreal, QC H3G 3C4, Canada.
Telephone: 1-514-558 6138
Website: Http://www.cscanada.net; Http://www.cscanada.org
E-mail:caooc@hotmail.com; office@cscanada.net
Copyright © 2010 Canadian Research & Development Centre of Sciences and Cultures