用磁力计估计后座航向

J. Beach, Matthew E. Argyle, T. McLain, R. Beard, S. Morris
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引用次数: 1

摘要

尾翼飞机融合了固定翼飞机的耐力和速度,以及旋翼飞机的灵活性和垂直起降能力。典型的控制和估计方案对飞机将经历的最大姿态进行了假设,而这些假设对尾翼是无效的。本文讨论了使用欧拉角的典型EKF磁强计测量更新的局限性。它显示了如何使用第二套欧拉角,以避免万向节锁。给出了一种完全不使用欧拉角而直接使用四元数确定航向误差和更新姿态估计的方法。这种方法突出了EKF在估计四元数时的局限性。本文简要探讨了一种乘法EKF来克服这些限制。给出了一架实际尾翼飞机的硬件测试结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tailsitter heading estimation using a magnetometer
The tailsitter aircraft merges the endurance and speed of fixed-wing aircraft with the flexibility and VTOL abilities of rotorcraft. Typical control and estimation schemes make assumptions about the maximum attitude an aircraft will experience that are not valid for tailsitters. This paper discusses the limitations of a typical EKF magnetometer measurement update that uses Euler angles. It is shown how to use a second set of Euler angles to avoid gimbal lock. A method is given that bypasses the use of Euler angles altogether and directly uses the quaternion to determine heading error and update the attitude estimate. This method highlights the EKF limitations in estimating a quaternion. A multiplicative EKF is briefly explored to overcome these limitations. Hardware results on an actual tailsitter aircraft are presented.
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