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载体姿态变化对水下磁场定位精度的影响及监测方法 被引量:3

Effect of vehicle attitude variation on underwater magnetic field localization precision and its detection method
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摘要 基于地磁异常反演的水下载体定位方法是为解决水下地磁图不易构建而提出的。将水下地磁异常视为偶极子磁性目标,其磁场大小及梯度由捷联于载体的十单轴磁力计测得,再根据磁场大小及梯度确定载体相对于目标的位置。对目标磁场大小及梯度与载体姿态间的关系,及姿态变化对定位精度的影响进行了理论分析与数值仿真,表明姿态变化对磁场大小的测量几乎没有影响,而对磁场梯度影响大,但载体相对于目标的距离却不随姿态改变而变化。根据目标磁矩与载体姿态角的关系,提出了利用磁矩解算载体姿态变化的新方法,对其进行了理论分析与数值仿真,结果表明,该方法原则上具有较高的解算精度,为监测载体姿态变化提供了一种新途径。 Underwater vehicle localization method based on geomagnetic anomaly inversion is proposed for solving the problem that the underwater geomagnetic map is not easy to make.In this method,underwater geomagnetic anomaly can be viewed as a magnetic dipole target.The vehicle position relative to the target is determined by the magnitude of its magnetic field and gradients,which are measured using ten single-axis magnetometers strapped on the vehicle.The relationships between magnetic field magnitude,gradients and vehicle attitude are studied theoretically and simulated numerically,and at the same time its effect on localization precision is also analyzed.These results show that the magnetic field magnitude is not almost influenced by vehicle attitude variation but the effect on its gradients are obvious.However,the distance between underwater vehicle and magnetic target does not almost vary with attitude angles.A novel method to calculate vehicle attitude variation by target magnetic moments is put forward and is studied theoretically and simulated numerically.The results show the calculating precision for the method is higher in principle,which can be used to detect attitude variation of underwater vehicles.
出处 《系统工程与电子技术》 EI CSCD 北大核心 2010年第9期1982-1986,共5页 Systems Engineering and Electronics
基金 国家自然科学基金(60775001 60834005)资助课题
关键词 水下载体定位 地磁异常 姿态 磁偶极子 精度 underwater vehicle localization geomagnetic anomaly attitude magnetic dipole precision
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  • 1李俊,徐德民,宋保维,严卫生.自主式水下潜器导航技术发展现状与展望[J].中国造船,2004,45(3):70-77. 被引量:30
  • 2刘为任,庄良杰.潜用惯导系统误差估计技术研究[J].应用科学学报,2005,23(3):324-326. 被引量:2
  • 3张昌达.航空磁力梯度张量测量——航空磁测技术的最新进展[J].工程地球物理学报,2006,3(5):354-361. 被引量:99
  • 4Kussat N H, Chadwell C D, Zimmerman R. Absolute positioning of an autonomous underwater vehicle using GPS and acoustic measurements[J].IEEE Journal of Oceanic Engineering, 2005,30(1):153-164.
  • 5Eustiee R M, Pizarro O, Singh H. Visually augmented naviga tion for autonomous underwater vehicles[J]. IEEE Journal of Oceanic Engineering, 2008,33(2):103 - 122.
  • 6Rice H, Kelmenson S, Mendelsonhn L. Geophysical navigation technologies and applications[C]// Proc. of the IEEE Position Location and Navigation Symposium, 2004 : 618 - 624.
  • 7Gleason D M. Passive airborne navigation and terrain avoidance using gravity gradiometry[J].Journal of Guidance, Control and Dynamics, 1995, 18(6) :1450 - 1458.
  • 8Yuh J. Design and control of autonomous underwater robots: a survey[J]. Autonomous Robots, 2000,8 : 7 - 24.
  • 9Leader D E. Kalman filter estimation of underwater vehicle position and attitude using velocity aided by inertial motion unit[D]. Massachusetts: Massachusetts Institute of Technology, 1994.
  • 10Yoshii T. Method for detecting a magnetic source by measuring the magnetic field thereabout [P]. Unite States Patent: 4309659,1982 - 01 - 05.

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