|本期目录/Table of Contents|

[1]张 辉,康雪杨,冯 斌.光纤陀螺仪自动测试系统设计[J].工业仪表与自动化装置,2017,(01):37-41.
 ZHANG Hui,KANG Xueyang,FENG Bin.Design of Automatic Test System for Fiber Optic Gyroscope[J].Industrial Instrumentation & Automation,2017,(01):37-41.
点击复制

光纤陀螺仪自动测试系统设计

《工业仪表与自动化装置》[ISSN:1000-0682/CN:61-1121/TH]

卷:
期数:
2017年01期
页码:
37-41
栏目:
出版日期:
2017-02-15

文章信息/Info

Title:
Design of Automatic Test System for Fiber Optic Gyroscope
文章编号:
1000-0682(2017)01-0000-00
作者:
张 辉1康雪杨2冯 斌2
(1.西安现代控制技术研究所(203所),西安 710065;2.同济大学中德学院 电信系,上海 201804)
Author(s):
ZHANG Hui1KANG Xueyang2FENG Bin2
(1. Xi'an Institute of Modern Control Technology (203),Xi'an 710065,China;2.Department of Electronic Engineering,Sino-German College of Tongji University,Shanghai 201804,China)
关键词:
光纤陀螺仪FPGA上位机统计测试报表自动化测试
Keywords:
fiber optic gyroscopeFPGAPCstatistical test reportsautomatic test
分类号:
TN709;TP23
DOI:
-
文献标志码:
A
摘要:
为了满足多种型号光纤陀螺仪的复杂测试需求,该文设计了一种光纤陀螺仪自动测试系统。该测试系统具有基于FPGA的硬件主板与模块化可更换的陀螺仪电源、信号采集子板,支持多串口测试协议,采集的数据通过串口转换后统一发送到上位机软件端进行存储、分析和显示,可导入模板实现测试、参数标定全程自动化,并生成统计报表。该系统遵循GJB 2426A—2004标准,能兼容市面90%以上的各型光纤陀螺仪,可自动化完成光纤陀螺仪的基本性能测试,大大提升产品研发检测的效率。
Abstract:
In order to meet the complex testing requirements of various types of fiber optic gyroscopes, an automatic test system for fiber optic gyroscope is designed in this paper. This test system is with hardware board based on FPGA, modularized replaceable gyroscope power supply and signal collecting daughterboard. It supports multiple serial testing protocols. The collected data is sent to the upper computer software for storage, analysis and display through serial conversion. Templates can be imported for realization of automation of the entire process of tests and parameter calibration, and then the statistical reports can be generated. The system conforms to the GJB 2426A-2004 standard and is compatible with more than 90% of all types of fiber optic gyroscopes, as well as, it can automate the basic performance test of fiber optic gyroscope, so the test efficiency of product R & D can be improved greatly.

参考文献/References:

[1] 姚雪峰,孙慈,杨晋,等.高精度角位移平台的研制及误差补偿[J].仪器仪表学报,2016,37(5):961-967. [2] 杨金显,陈超,李志鹏.基于小波卡尔曼混合算法陀螺仪的去噪方法[J].电子测量技术,2016,39(3):29-33. [3] 吴军伟,缪玲娟,许刚,等.微小型三轴光纤陀螺技术[J].红外与激光工程,2010(05):68-73. [4] An optimal open-loop multimode fiber gyroscope for rate- grade performance applications[J].Optical Fiber Technology, 2011,17(12):546-553. [5] Synchronization and anti-synchronization coexist in two- degree-of-freedom dissipative gyroscope with Non-linear inputs Nonlinear Analysis[J].Real World Applications, 2008,9(12):2253-2261. [6] 王健,戴俊洁,郭全民.组合陀螺测试系统的设计与实现[J].西安工业大学学报,2011,31(3): 271-278. [7] 范振军.多路三轴光纤陀螺自动化测试系统设计与实现[J].电子科技,2012,25(2):82-85. [8] 李芃博.光纤陀螺自动化测试系统设计[J].电子科技, 2015,28(4):160-165. [9] 李贺,邓学文,朱奎宝,等.基于脚本驱动的光纤陀螺自动化测试系统设计[J].计算机工程与设计,2016,37(2): 552-555,561. [10] 赵亚飞,宋凝芳,杜士森,等.基于Visual C++的光纤陀螺多参数自动化测试系统[J].压电与声光,2013, 35(6): 824-828,832. [11] 吉世涛,秦永元,刘智荣,等.光纤陀螺仪测试系统设计与软件实现[J].测控技术,2012,31(5):77-80. [12] 蒋萍花,张楠.数据采集系统串口通信的设计与实现[J].电子测量技术,2015,38(6):139-142. [13] 孙圣和,张兆礼,付平,等.光纤陀螺全数字信号处理技术研究[J].仪器仪表学报,2000,21(6):601-603.

相似文献/References:

[1]周月阳,陈 波.平锁缝纫机运动控制卡设计[J].工业仪表与自动化装置,2014,(05):26.
 ZHOU Yueyang,CHEN Bo.Designing of the lockstitch button holing machine motion control card[J].Industrial Instrumentation & Automation,2014,(01):26.
[2]常国祥,杨金龙,刘岫岭,等.两电平SVPWM新算法研究与实现[J].工业仪表与自动化装置,2015,(03):37.
 CHANG Guoxiang,YANG Jinlong,LIU Xiuling,et al.Reseach and implementation on new algorithm of two-level SVPWM[J].Industrial Instrumentation & Automation,2015,(01):37.
[3]陈 军.基于FPGA的FFT变换分析与电路设计实现[J].工业仪表与自动化装置,2016,(01):40.
 CHEN Jun.Analysis of FFT transform and implementation of circuit design based on fPGA[J].Industrial Instrumentation & Automation,2016,(01):40.
[4]滕林阳,雍进玲,李 坤,等.基于Zynq7100 SoC芯片的电力故障录波监测装置设计[J].工业仪表与自动化装置,2016,(03):60.
 TENG Linyang,YONG Jinling,LI Kun,et al.Design of power fault recording and monitoring device based on Zynq7100 SoC chip[J].Industrial Instrumentation & Automation,2016,(01):60.
[5]陈禹伶.全自动模板机智能控制系统的设计与实现[J].工业仪表与自动化装置,2016,(04):27.
 CHEN Yuling.Design and implementation of a full-automatic mouldboard machine control system[J].Industrial Instrumentation & Automation,2016,(01):27.
[6]高敬更,陈 欣,杨 熹,等.基于DDS的现场校验仪变频功率源研究[J].工业仪表与自动化装置,2017,(01):42.
 GAO Jinggeng,CHEN Xin,YANG Xi,et al.The research of on-site verification inverter power source based on DDS technology[J].Industrial Instrumentation & Automation,2017,(01):42.
[7]董朝阳,滕林阳,陈同浩,等.基于ZYNQ的变流器通用控制平台研究[J].工业仪表与自动化装置,2017,(02):77.
 DONG Chaoyang,TENG Linyang,CHEN Tonghao,et al.Common converter control system based on ZYNQ[J].Industrial Instrumentation & Automation,2017,(01):77.
[8]彭 喆,付盛坤.基于FPGA的内嵌滤波算法的高速PCI采集卡设计[J].工业仪表与自动化装置,2017,(03):74.
 PENG Zhe,FU Shengkun.Design of high-speed PCI data acquisition card with embedded filter algorithm based on FPGA[J].Industrial Instrumentation & Automation,2017,(01):74.
[9]张 可,尹 涛,刘 群,等.一种应用于行波测距装置的高精度时间同步技术[J].工业仪表与自动化装置,2017,(04):101.
 ZHANG Ke,YIN Tao,LIU Qun,et al.A highly accurate time synchronization technology applied to the traveling wave distance measuring device[J].Industrial Instrumentation & Automation,2017,(01):101.
[10]李祥阳,陈万强.三相异步电机软启动器的研究[J].工业仪表与自动化装置,2018,(01):115.[doi:1000-0682(2018)01-0000-00]
 LI XiangYang,CHEN WanQiang.The research on soft starter of three-phase asynchronous motor[J].Industrial Instrumentation & Automation,2018,(01):115.[doi:1000-0682(2018)01-0000-00]

备注/Memo

备注/Memo:
收稿日期:2016-08-23 基金项目:国家重大科学仪器设备开发专项(2013YQ31073707) 作者简介:张辉(1983),工程师,研究方向为光线陀螺及应用技术。 冯斌(1990),硕士研究生,研究方向为机器学习,大数据分析。 通讯作者:康雪杨(1991),硕士研究生,研究方向为自动化仪表,数据库应用。
更新日期/Last Update: 1900-01-01