基于地磁信息熵和地磁方向熵的高空地磁匹配区选择方法

Yongqiang Han, Ruirui Liang
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摘要

针对高空地磁图上等值线趋势明显的特点,本文在研究地磁信息熵和地磁方向熵的基础上,提出了一种结合地磁信息熵和地磁方向熵的高空地磁匹配区选择方法。该方法首先利用地磁信息熵选择地磁信息丰富的区域,然后根据地磁方向熵确定飞行轨迹方向,得到最优匹配轨迹。最后,该方法通过半物理仿真,对比分析了三条不同方向的飞行轨迹在海拔 30000 米地磁图上的匹配定位结果。实验结果表明,沿信息熵小的轨迹飞行导航误差小,其定位误差是沿信息熵最大方向轨迹定位误差的 12.7%。根据地磁方向熵值选择飞行轨迹可以大大提高地磁匹配定位的精度和可靠性。本文的方法可为地磁匹配导航的路径规划提供依据。
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A high-altitude geomagnetic matching area selection approach based on geomagnetic information entropy and geomagnetic direction entropy
Aiming at the obvious trend of the contours on the high-altitude geomagnetic map, this paper presents a method of high-altitude geomagnetic matching area selection combining geomagnetic information entropy and geomagnetic direction entropy based on the study of geomagnetic information entropy and geomagnetic direction entropy. The method first uses geomagnetic information entropy to select the region with rich geomagnetic information, and then determines the direction of the flight trajectory according to geomagnetic direction entropy to obtain the optimal matching trajectory. Finally, the method compares and analyzes the matching localization results of three flight trajectories in different directions on the geomagnetic map at an altitude of 30,000 m by using semi-physical simulation. The experimental results show that the flight navigation error along the trajectory with small information entropy is small, and its positioning error is 12.7% of the trajectory positioning error along the maximum information entropy direction. Selecting the flight trajectory according to the value of the geomagnetic direction entropy can greatly improve the precision and reliability of the geomagnetic matching localization. The method in this paper can provide a basis for path planning of the geomagnetic matching navigation.
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