航空航向参考系中磁场传感器误差及三维空间偏差确定算法研究

M. Witoś, A. Szelmanowski, A. Pazur, Jerzy Borowski
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引用次数: 0

摘要

在二十一世纪,磁测量被广泛应用于各种应用中。本文介绍了磁测量在民用和军用飞机磁航向系统(MHS)和头盔提示系统(HMCS)中的实际应用。介绍了磁场传感器的应用范围、测量范围和误差。针对航空航向指示系统在不同空间定向角度下发生的空间偏差的确定问题,确定了研究问题及其求解方法。给出了飞机结构元件地球磁场和来自硬磁铁和软磁铁的干扰场组成的数学关系。一个创新元素是仿真模型,在Matlab-Simulink包中开发,可以确定给定空间方向角的2D水平偏差和3D空间偏差。本文介绍了磁力计定位误差影响的若干研究结果,以及利用磁偏过程中的频谱分析识别磁力计误差的可能性。
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Research on errors of magnetic field sensors and algorithms for determining 3D spatial deviation in aeronautical heading reference systems
In the XXI century, magnetic measurements are widely used in diverse applications. This paper presents the practical application of magnetic measurements in the Magnetic Heading System (MHS) and the Helmet Mounted Cueing System (HMCS) on board of civilian and military aircrafts. The area of application of magnetic field sensors and the corresponding measuring ranges and errors are presented. The research problem and the method of its solution were defined in relation to the determination of spatial deviation occurring in aviation heading indicating systems for various angles of spatial orientation. The mathematical relationships describing the components of the Earth's magnetic field and disturbing fields originating from hard and soft magnetic iron, which are structural elements of the aircraft, were given. An innovative element is a simulation model, developed in the Matlab-Simulink package, enabling the determination of 2D horizontal deviation and 3D spatial deviation for the given spatial orientation angles. Selected results of research on the influence of inaccuracies in the positioning of magnetometers and the possibility to identify their errors using the spectral analysis applied to the course of magnetic deviation are presented.
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