基于加速度计和太阳敏感器的探月车粗对准

Jaehyuck Cha, Se-jong Heo, Chan Gook Park
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引用次数: 0

摘要

月球车的机动性在月球探测中起着关键作用。月球车的成功运行需要高精度的导航技术。为了实现高精度惯性导航,初始对准精度至关重要。一般情况下,初始对中可分为粗对中和精对中两个过程。在一般的粗对准过程中,以静止漫游车的加速度和转速作为参考矢量。但是,月球的加速度和自转速度分别比地球小1/6和1/27。因此,即使使用相同的传感器,在月球上初始粗对准的性能也会变差。本文提出了用加速度计和太阳敏感器代替加速度计和陀螺仪的三种粗对准方法,并分析了相关误差。为了进行比较,总结了现有的一般粗对齐算法。通过计算机仿真验证了分析结果,结果表明所提算法大大提高了粗对准的性能,至少在月球上优于现有算法。因此,本文提出的算法适用于月球车探测,也可应用于其他行星探测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coarse alignment of lunar exploration rover using accelerometer and sun sensor
Lunar rover plays a key role in lunar exploration based on its maneuverability. For the successful operation of the lunar rover, a high-accuracy navigation technique has to be obtained. In order to perform high-accuracy inertial navigation, the accuracy of initial alignment is important. In general, initial alignment can be divided into two processes, coarse and fine alignment. In the general coarse alignment process, the acceleration and rotation rate of the stationary rover are used as reference vectors. However, the acceleration and rotation rate of the Moon are 1/6 and 1/27 times smaller than those of the Earth, respectively. As a result, even though the same sensors are used, the performance of initial coarse alignment gets worse on the Moon. In this paper, three coarse alignment methods using accelerometers and sun sensor, instead of accelerometers and gyros, are proposed and the associated errors are analyzed. For comparison, the existing general coarse alignment algorithms are summarized. The analyses are verified by appropriate computer simulations, and it shows that the proposed algorithms greatly improve the performance of coarse alignment, outperforming the existing algorithms at least on the Moon. Therefore, the proposed algorithm is suitable for lunar rover application, and can also be applied to other planetary explorations.
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