Improvement of the attitude determination accuracy for nanosatellites using a camera sensor

Taeho Kim, Youngjoo Kim, H. Bang
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引用次数: 2

Abstract

This paper presents a method of improving the attitude determination accuracy for nanosatellites with the aid of the camera sensor. In typical mission, the star tracker is usually used as an optical sensor for the precise attitude pointing for the nanosatellite. However, mostly, the star tracker cannot be affordable for most of the missions because of its cost. Instead of using the star tracker, the low cost MEMS camera module was used for providing the angular velocity vector of the satellite. The angular velocity from the camera module was put into the Extended Kalman Filter as a measurement. The simulation results showed that the attitude determination accuracy using the angular velocity from the camera module was improved compared with the results without the camera module. For the simulation, the spacecraft dynamics and the space environments were modeled for the verification. The precise camera model and the tracking of the stars in the camera images will be conducted in the future.
利用相机传感器提高纳米卫星姿态确定精度
提出了一种利用相机传感器提高纳米卫星姿态确定精度的方法。在典型的任务中,星跟踪器通常用作光学传感器,为纳米卫星提供精确的姿态指向。然而,大多数情况下,由于其成本,大多数任务都负担不起星跟踪器。采用低成本的MEMS相机模块代替星跟踪器提供卫星的角速度矢量。将相机模块的角速度作为测量值放入扩展卡尔曼滤波中。仿真结果表明,与不加相机模组的结果相比,利用相机模组的角速度确定姿态的精度得到了提高。在仿真中,建立了航天器动力学模型和空间环境模型,验证了仿真结果。未来将进行精确的相机模型和相机图像中恒星的跟踪。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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