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Performance in Solar Orientation Determination for Regular Pyramid Sun Sensors

机译:常规金字塔形太阳传感器在太阳方向确定中的性能

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摘要

Non-planar sun sensors can determine solar orientation by existing photodiodes or by reusing solar panels, without increasing the size and mass of spacecraft. However, a limiting factor for the improvement of the accuracy of orientation lies in the lack of a detailed performance assessment on interference suppression. In this paper, a new method that determines solar orientation in the frequency domain is developed for regular pyramid sun sensors, which are formed by regular pyramid arrays. Furthermore, two formulations are established to evaluate the errors of the solar azimuth and elevation angle in solar orientation determination based on the newly proposed frequency-domain method. With these formulations of performance evaluation, we discover the mathematical relationship between the interference spectrum, array geometry, solar irradiance, solar azimuth or elevation angle, and the error in solar orientation determination for the first time. This reveals that the internal interference from the detection system can be completely suppressed in solar orientation determination, and the constant interference can be eliminated in the estimation of solar azimuth angle. Simulation and field experiments validated the effectiveness of the new orientation method, error formulations and performance of each interference source.
机译:非平面太阳传感器可以通过现有的光电二极管或通过重复使用太阳能电池板来确定太阳方向,而无需增加航天器的尺寸和质量。但是,提高定向精度的一个限制因素在于缺乏对干扰抑制的详细性能评估。本文针对由规则金字塔阵列形成的常规金字塔太阳传感器,开发了一种在频域中确定太阳方向的新方法。此外,基于新提出的频域方法,建立了两个公式来评估太阳方位确定中太阳方位角和仰角的误差。通过这些性能评估公式,我们首次发现了干涉光谱,阵列几何形状,太阳辐照度,太阳方位角或仰角与太阳方位确定误差之间的数学关系。这表明在太阳方位确定中可以完全抑制来自检测系统的内部干扰,并且可以在估计太阳方位角时消除恒定干扰。仿真和现场实验验证了新定位方法,误差公式和每个干扰源性能的有效性。

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