返回
An Improved Geomagnetic Navigation Method Based on Two-Component Gradient Weighting
DOI:10.1109/LGRS.2022.3213779.png)
摘要
En 中文
During the geomagnetic vector navigation, there are three attitude angles required for coordinate transformation in the process of geomagnetic vector elements' calculation. However, the yaw angle provided by the inertial navigation system (INS) has accumulated error which is inevitable and will seriously reduce navigation accuracy. An improved geomagnetic navigation method based on two-component gradient weighting (TCGW) is proposed in this letter. The horizontal and vertical geomagnetic components can be calculated with roll angle and pitch angle based on the implicit trigonometric theorem in the process of coordinate transformation. And the gradient weights are used as the coefficients to improve the accuracy and universality. The simulations based on four typical types have been performed, and the Monte Carlo simulation results indicated that the proposed method has higher matching accuracy than traditional vector ICCP and MAGCOM method. Furthermore, airborne navigation experiments have been carried out to verify the accuracy and effectiveness of the proposed method.
Keyword:
Navigation
Magnetic field measurement
Magnetometers
Correlation
Mathematical models
Geomagnetism
Aircraft navigation
Correlation restriction with gradient weight
geomagnetic matching navigation
geomagnetic two components calculation
期刊
IF:
16.4
论文数:
1.0W
被引数:
5.1K
机构
引用论文
Local Symmetry-Broken Single Pd Atoms Induced by Doping Ag Sites for Selective Electrocatalytic Semihydrogenation of Alkynes局部对称性破缺的单个Pd原子通过Ag位点掺杂诱导的选择性电催化炔烃半氢化
ACS NANO
IF16
Bilateral Search as an Explanation for Labor Market Segmentation and Other Anomalies双边搜索作为劳动力市场分割及其他异常现象的解释
没有更多内容

