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RECONSTRUCTION OF ATTITUDE DYNAMICS OF FREE FALLING UNITS

机译:自由下落单元姿态动力学的重构

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Attitude reconstruction of a free falling sphere for the experiment Multiple Spheres for Characterization of Atmosphere Temperatures (MUSCAT) is studied in this paper. The attitude dynamics is modeled through Euler's rotational equations of motion. To estimate uncertain parameters in this model such as the matrix of inertia and the lever arm for the dynamic pressure with respect to the center of mass, the dynamics reconstruction can be formulated as an optimization problem. The goal is to minimize the deviation between the measurements and the propagation from the system equations. This approach was tested against a couple of flight data sets which correspond to different periods of time. The result is very reasonable compared to the laboratory test. The estimate can be improved further through allowing drag coefficients variable and taking advantage of measurements from a magnetometer in numerical calculation.
机译:本文研究了用于实验的自由落体球的姿态重建(用于表征大气温度的多个球体(MUSCAT))。姿态动力学是通过欧拉运动的旋转方程建模的。为了估计该模型中的不确定参数,例如惯性矩阵和相对于质心的动态压力的杠杆臂,可以将动态重构公式化为一个优化问题。目的是使测量和系统方程的传播之间的偏差最小。该方法针对对应于不同时间段的几个飞行数据集进行了测试。与实验室测试相比,结果非常合理。通过允许阻力系数可变并在数字计算中利用磁力计的测量值,可以进一步改善估计值。

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