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Effect upon vehicle position precision of errors in measuring magnetic field device

机译:磁场测量仪中误差对车辆位置精度的影响

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The relative position between magnetic target and the device, which is installed on vehicle under water, is determined by measuring magnetic field magnitude and its gradient of target on condition that geomagnetic field anomaly can be viewed as a magnetic dipole object. The errors of measuring magnetic field and its gradient caused by nonorthogonality between axes, different sensitivity of each axis, and installation center departure of magnetometers are analyzed in theoretically. These errors of magnetic field magnitude and its gradient can act effect on the localization precision of underwater vehicle, which is analyzed theoretically and simulation numerically. These results show that magnetometer performances such as nonorthogonality between axes, and different sensitivity of each axis have the remarkable influence on the localization precision.
机译:磁性目标与安装在水下车辆上的设备之间的相对位置是通过测量磁场强度及其目标梯度来确定的,条件是可以将地磁场异常视为磁偶极子。从理论上分析了轴之间的非正交性,各轴的灵敏度不同以及磁力计的安装中心偏离引起的磁场及其梯度的测量误差。这些磁场强度及其梯度的误差会影响水下航行器的定位精度,对此进行了理论分析和数值模拟。这些结果表明,磁力计的性能,例如轴之间的非正交性以及每个轴的不同灵敏度,对定位精度有显着影响。

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