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A low cost photodiode sun sensor for CubeSat and planetary micro-rover

机译:适用于CubeSat和行星微型流动站的低成本光电二极管太阳传感器

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摘要

This paper presents the development of low-cost methodologies to determine the attitude of a small, CubeSat-class satellite and a microrover relative to the sun's direction. The use of commercial hardware and simple embedded designs has become an effective path for university programs to put experimental payloads in space for minimal cost, and the development of sensors for attitude and heading determination is often a critical part. The development of two compact and efficient but simple coarse sun sensor methodologies is presented in this research. A direct measurement of the solar angle uses a photodiode array sensor and slit mask. Another estimation of the solar angle uses current measurements from orthogonal arrays of solar cells. The two methodologies are tested and compared on ground hardware. Testing results show that coarse sun sensing is efficient even with minimal processing and complexity of design for satellite attitude determination systems and rover navigation systems.
机译:本文介绍了低成本方法的发展,这些方法可确定小型CubeSat级卫星和微型漫游者相对于太阳方向的姿态。商业硬件和简单嵌入式设计的使用已成为大学计划以最小的成本将实验有效载荷置于太空中的有效途径,开发用于姿态和航向确定的传感器通常是至关重要的部分。这项研究提出了两种紧凑,高效但简单的粗太阳传感器方法的发展。太阳角的直接测量使用光电二极管阵列传感器和狭缝掩模。太阳角的另一种估算方法是使用来自太阳能电池正交阵列的电流测量值。在地面硬件上测试并比较了这两种方法。测试结果表明,即使对卫星姿态确定系统和流动站导航系统进行的处理最少且设计复杂,粗略的阳光感应也是有效的。

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