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Spinning projectile's attitude measurement using intersection ratio of magnetic sensors

机译:利用磁传感器的交叉比测量旋转弹丸的姿态

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摘要

Concerning on the problem of low measuring precision of the current micro-inertial sensors, a novel attitude measurement method is proposed to dismiss the drift for remarkable attitude error. According to the output of the onboard three-axis magnetic sensor in the process of projectile flight, a low-cost attitude detection system is designed by using the intersection ratio of the sensor. First, the output model of the onboard three-axis magnetic sensor is established. The mathematical relationship between the characteristic ratio of magnetic sensor output and the pitch angle is then derived. Then, the solution and correction algorithm of the attitude angles are studied. Finally, the effectiveness of the attitude measurement method has been validated by carrying out the semi-physical experiments. The experimental results indicate that the error of attitude angles is within +/- 1 degrees and the attitude angle error of the combined magnetic sensors is not cumulative. Meanwhile, the geomagnetic field strength is dispensable during the whole calculation process. Compared with the Zero Crossing Method, the proposed method has shown a nearly two-times higher accuracy and has no limitation of MAGSONDE window. What is more, this method proves to be more simple and has a doubled update rate in attitude angle calculation.
机译:针对当前微惯性传感器测量精度低的问题,提出了一种消除姿态漂移的显着姿态误差的新姿态测量方法。根据弹丸飞行过程中机载三轴磁传感器的输出,利用传感器的相交比设计了一种低成本的姿态检测系统。首先,建立车载三轴磁传感器的输出模型。然后得出磁传感器输出的特征比与俯仰角之间的数学关系。然后,研究了姿态角的求解和修正算法。最后,通过进行半物理实验验证了姿态测量方法的有效性。实验结果表明,姿态角误差在+/- 1度以内,组合式磁传感器的姿态角误差不是累积的。同时,在整个计算过程中都不需要地磁场强度。与过零方法相比,该方法显示出近两倍的精度,并且不受MAGSONDE窗口的限制。而且,这种方法被证明更简单,并且在姿态角计算中具有两倍的更新率。

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