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Vehicle attitude detection in underwater magnetic anomaly localization experiment

机译:水下磁性异常本地化实验中的车辆姿态检测

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The relative position between magnetic target and the device installed on underwater vehicle, is determined by measuring magnetic field magnitude and gradients of target on condition that geomagnetic field anomaly can be viewed as a magnetic dipole target. The relationship between the errors of magnetic field magnitude, gradients and the variation of platform attitude and its effect on localization precision of vehicle are studied theoretically and simulated numerically. The results show that the effect of vehicle attitude variation on magnetic field magnitude and gradients are small and obvious, respectively. However, the distance between magnetic target and the device is not nearly varied. A new method calculating vehicle attitude variation by magnetic moments of the target is studied theoretically and simulated numerically. The results show the calculating precision for the novel method is higher in principle, which can be used to detect the attitude of underwater vehicle.
机译:磁靶和安装在水下车辆上的装置之间的相对位置是通过测量地质磁场异常可以被视为磁偶极靶的条件的磁场幅度和靶的靶的磁场幅度和梯度来确定。在理论上和数量地模拟了磁场尺寸,梯度误差与平台姿态变化的关系及其对车辆定位精度的影响。结果表明,车辆姿态变化对磁场幅度和梯度的影响分别小而明显。然而,磁性目标与器件之间的距离并不差别变化。在理论上和数值上学习通过靶的磁矩计算车辆姿态变化的新方法。结果表明,原则上的新方法的计算精度更高,可用于检测水下车辆的姿态。

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