Directional Camera Control on High Altitude Balloons

M. Plewa, Brent M. Scharlau
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引用次数: 3

Abstract

The research reported in this paper examined the design and control of a gimbal for solar eclipse tracking and video recording. The gimbal design required 3 axes of rotation to allow for a full range of motion. Utilizing individual brushless motors for each of the axes ensures minimum rotational requirements on each axes. In controlling the gimbal, both a mathematical and visual method was utilized. The mathematical method is a modeled version of what is currently used for solar array pointing. The visual method looks at where the position of the sun is within the image and determines what angle changes are required. Utilizing a combination of these methods helps to eliminate error that accumulates within the onboard gyros due to the erratic behavior of balloon motion during flight. Elimination of this error ensures accurate video recording of the solar eclipse.
高空气球的定向摄像机控制
本文研究了一种用于日食跟踪和录像的云台的设计和控制。万向节的设计需要3个旋转轴,以允许全范围的运动。每个轴使用单独的无刷电机,确保每个轴的最小旋转要求。在控制框架时,采用了数学和视觉方法。这种数学方法是目前用于太阳能电池阵列指向的模型版本。视觉方法查看太阳在图像中的位置,并确定需要改变的角度。利用这些方法的组合有助于消除由于气球在飞行过程中运动的不稳定行为而在机载陀螺仪内积累的误差。消除这个误差可以确保准确的日食视频记录。
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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