系统工程与电子技术

• 制导、导航与控制 • 上一篇    下一篇

单轴旋转SINS轴向陀螺漂移精确标校方法

胡杰, 程向红, 朱倚娴   

  1. 东南大学微惯性仪表与先进导航技术教育部重点实验, 江苏 南京 210096
  • 出版日期:2017-06-23 发布日期:2010-01-03

Calibration method for axial gyro drifts of single axis rotary SINS

HU Jie, CHENG Xianghong, ZHU Yixian   

  1. Key Laboratory of Micro Inertial Instrument and Advanced Navigation Technology of Ministry of Education, Southeast University, Nanjing 210096, China
  • Online:2017-06-23 Published:2010-01-03

摘要:

为提高单轴旋转捷联惯导系统长时间导航精度,提出了一种精确标校轴向陀螺漂移的方法。在静基座条件下分析了轴向陀螺漂移、初始姿态和航向角误差对系统经纬度影响,将水平阻尼网络引入到导航算法流程中以抑制系统舒拉振荡误差。建立了经纬度误差与轴向陀螺漂移、初始航向角误差之间的数学模型,并设计了一种合理的标校流程,采用最小二乘法对轴向陀螺漂移进行精确标校。对该方法进行了数学仿真与实际系统验证实验。实验结果表明,当系统陀螺漂移误差为0.01(°)/h时,经过12.5 h精确标校后轴向陀螺漂移的辨识精度达到0.001(°)/h,系统的定位精度优于1.5 n mile/48 h。

Abstract:

In order to improve the precision of long time navigation for single axis rotary strapdown inertial navigation system, an accurate method to calibrate the axial gyro drifts is proposed. The influences of the axial gyro drifts and the angle error of the initial attitude and heading on the latitude and longitude of the system are analyzed under the static base condition. The horizontal damping network is introduced into the navigation algorithm to suppress the Shuler oscillation error. A mathematical model is established to connect the error of latitude and longitude with the axial gyro drifts and the angle error of initial heading, and in addition a reasonable calibration flow is designed, in which the least square method is used to calibrate the axial gyro drifts accurately. Mathematical simulations and actual system verification experiments are carried out, and the results show that when the gyro drifts error is 0.01(°)/h, the identification precision on the axial gyro drifts can reach 0.001(°)/h after 12.5 h precise calibration, and the positioning precision of the SINS is better than 1.5 n mile/48 h.