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A comparative study of spacecraft attitude determination and estimation algorithms (a cost-benefit approach)

机译:航天器姿态确定和估计算法的比较研究(成本效益方法)

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摘要

The primary goal of this work is to investigate various performance indices of spacecraft attitude determination and estimation algorithms to perform a cost-benefit analysis. This analysis could help the designer to choose whether to use an attitude determination algorithm or an attitude estimation algorithm. The choice depends mainly on the available computational resources and the required attitude determination accuracy. These performance indices include accuracy, and execution time. In order to determine these performance indices, a test-case spacecraft is utilized. The test-case spacecraft is subject to aerodynamics forces and moments, solar radiation pressure forces and moments, earth's oblateness till the fourth order (i.e. J4), residual magnetic dipole moments, and gravity gradient moments. The available spacecraft attitude sensors are magnetometer and gyro.
机译:这项工作的主要目的是研究航天器姿态确定和估计算法的各种性能指标,以进行成本效益分析。该分析可以帮助设计人员选择使用姿态确定算法还是姿态估计算法。该选择主要取决于可用的计算资源和所需的姿态确定精度。这些性能指标包括准确性和执行时间。为了确定这些性能指标,使用了测试用航天器。测试用航天器受空气动力和力矩,太阳辐射压力和力矩,直到第四阶的地球扁率(即J4),剩余磁偶极矩和重力梯度矩的作用。可用的航天器姿态传感器是磁力计和陀螺仪。

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