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采用亚像素插值提高用于立方星应用的单缝数字太阳传感器设计的精度。

Improved Accuracy of a Single-Slit Digital Sun Sensor Design for CubeSat Application Using Sub-Pixel Interpolation.

作者信息

Diriker Fuat Kaan, Frias Alexander, Keum Ki Hwan, Lee Regina S K

机构信息

Department of ESSE, York University, Toronto, ON M3J 1P3, Canada.

出版信息

Sensors (Basel). 2021 Feb 20;21(4):1472. doi: 10.3390/s21041472.

Abstract

In recent years, we have seen significant improvements in the digital sun sensor (DSS) design enabled by advanced micro-systems fabrication and optical sensing technologies. In this paper, we propose a simple single-slit DSS concept with improved accuracy using sub-pixel interpolation. In considering the DSS design, we focused on several characteristics of the sun sensor, including field-of-view, sensor accuracy, complexity, and computational requirements. First, the optimal mask design was determined based on the simple geometry of the slit size, mask height and pixel width. Then, a two-step pixel read-out algorithm was implemented for sub-pixel level interpolation to determine the illumination ratio using 1-, 2-, 4- and 8-bit readouts. Lastly, the improved DSS was integrated with typical CubeSat, commercial-grade attitude sensors suite and a simple TRIAD method to determine the attitude of a CubeSat in LEO. Compared to standard 1-bit read-out mode (0.32 deg RMSE), 8-bit DSS achieves better than 0.01 deg RMSE. In a CubeSat scenario, improvements in attitude knowledge and control accuracy are marginal when using TRIAD, due to the significantly lower accuracy in other CubeSat-scale sensors (magnetometer, for example).

摘要

近年来,我们看到先进的微系统制造和光学传感技术推动了数字太阳传感器(DSS)设计的显著改进。在本文中,我们提出了一种简单的单缝DSS概念,通过亚像素插值提高了精度。在考虑DSS设计时,我们关注了太阳传感器的几个特性,包括视场、传感器精度、复杂性和计算要求。首先,基于狭缝尺寸、掩膜高度和像素宽度的简单几何形状确定了最佳掩膜设计。然后,实施了一种两步像素读出算法用于亚像素级插值,以使用1位、2位、4位和8位读出确定光照比率。最后,将改进后的DSS与典型的立方星、商业级姿态传感器套件以及一种简单的TRIAD方法集成,以确定低地球轨道上立方星的姿态。与标准的1位读出模式(均方根误差为0.32度)相比,8位DSS的均方根误差优于0.01度。在立方星场景中,由于其他立方星规模传感器(例如磁力计)的精度显著较低,使用TRIAD时姿态知识和控制精度的提高幅度很小。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fdc1/7923810/33f2fb605208/sensors-21-01472-g001.jpg

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