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Development and Performance Characterization of Colour Star Trackers.

机译:彩色星形跟踪器的开发和性能表征。

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摘要

Star trackers provide an essential component to a satellite mission requiring high-precision and high-accuracy attitude measurements. A star tracker operates by taking pictures of the celestial sphere and attempting to identify the stars in the image using a combination of the geometric and brightness patterns. The star-positions in the image then determine the attitude of the sensor in the inertial frame. I propose extending the capability of star trackers by including the colour properties of the stars into the star identification process; hence, colour star tracking.;The approach to colour star tracker development, presented here, considers three aspects to the operation of the technology: colour measurement, star detection, and star pattern matching. In the measurement of colour analysis, a new set of estimation techniques are developed to estimate the colour and position of stars using colour-filter-array and trichroic prism cameras. Validation of the proposed techniques is achieved through a combination of laboratory and nigh-sky testing of hardware prototypes. The detection performance of the colour star tracker designs centres on a comparison with equivalent monochrome designs. By considering primitive detection algorithms, essentially raw thresholding, allows for a fair determination of the relative performance. Numerical simulations of potential designs examine the percentage of the celestial sphere where sufficient quantity of stars can be observed to yield an identification. Finally, extending the results of the detection analysis allows for a determination of the ambiguity within observed star scenes. While not explicitly pattern matching, this analysis establishes a baseline for the performance to be expected from practical pattern matching algorithms. Together, the combined results establish the overall expected increase in performance of colour star tracking over equivalent monochrome designs.;A critical goal of any star tracker design is to maximize the region of sky where the star tracker can successfully return an attitude solution. Additionally, the reliability of achieving correct attitude solutions must also be a factor. The work presented demonstrates that, given the correct design circumstances, colour star trackers can supersede their monochrome counterparts in these two aspects. Specifically by resolving formerly ambiguous scenes and increasing the total number of scenes that can yield a solution. As a consequence, colour measurement should now become a viable and explicit consideration in future star tracker design processes.;Current generation star trackers exist in a variety of forms, with a variety of additional potential designs and operational algorithms proposed in the literature. However, they all share the common trait of using a combination of geometric and monochrome brightness derived patterns to identify stars. Including colour information with the geometric and brightness properties into the identification process represents a new branch in the field of star tracker design. The process of measuring colour also causes a reduction in the amount of light gathered by the sensor, decreasing the number of stars observed. The challenge in colour star tracking becomes establishing that the additional information provided by colour to star patterns is greater than the loss of observable stars due to the measurement process. While superficially brief, accomplishing it touches upon a wide range of topic areas. This includes most research developed for monochromatic star trackers including imaging hardware, optics, noise rejection, parameter estimation, signal detection, data mining, pattern matching, and astronomy. Additionally, using colour necessitates introducing the topics of stellar photometry, spectral filtering, and colour imaging.
机译:恒星跟踪仪为需要高精度和高精度姿态测量的卫星任务提供了必不可少的组成部分。恒星跟踪器通过拍摄天球的图像并尝试使用几何图案和亮度图案的组合来识别图像中的星星来进行操作。然后,图像中的星形位置将确定传感器在惯性系中的姿态。我建议通过将恒星的颜色属性纳入恒星识别过程来扩展恒星跟踪器的功能。因此,这里介绍了彩色星形跟踪器的开发方法,它考虑了该技术操作的三个方面:颜色测量,星形检测和星形图案匹配。在色彩分析的测量中,开发了一套新的估算技术,以使用彩色滤光片阵列和三向色棱镜相机估算恒星的颜色和位置。通过对硬件原型进行实验室和近距离测试相结合,可以对所提出的技术进行验证。彩色星形跟踪器设计的检测性能集中在与等效单色设计的比较上。通过考虑原始检测算法,基本上可以使用原始阈值来公平确定相对性能。潜在设计的数值模拟检查了天球的百分比,在那里可以观察到足够数量的恒星以进行识别。最后,扩展检测分析的结果可以确定观察到的星光场景中的歧义。尽管没有明确的模式匹配,但该分析为从实际模式匹配算法获得预期性能建立了基线。总而言之,合并的结果确定了彩色恒星跟踪相对于同等单色设计在性能方面的总体预期提高。任何恒星跟踪器设计的一个关键目标是最大化恒星跟踪器可以成功返回姿态解决方案的天空区域。另外,获得正确姿势解决方案的可靠性也必须是一个因素。提出的工作表明,在正确的设计环境下,彩色恒星追踪器可以在这两个方面取代其单色同类产品。特别是通过解决以前模棱两可的场景并增加可以产生解决方案的场景总数。因此,色彩测量现在应该成为未来星跟踪器设计过程中可行和明确的考虑因素。新一代星跟踪器以多种形式存在,文献中还提出了多种其他潜在设计和运算算法。但是,它们都具有共同的特征,即结合使用几何和单色亮度衍生的图案来识别恒星。将具有几何和亮度属性的颜色信息包括到识别过程中,代表了星形跟踪器设计领域的一个新分支。测量颜色的过程还导致传感器收集的光量减少,从而减少了观察到的恒星数量。彩色恒星跟踪的挑战在于确定由颜色提供给星形模式的附加信息要大于由于测量过程而导致的可观测恒星的损失。虽然简短,但实现起来涉及很多主题领域。这包括针对单色恒星跟踪仪开发的大多数研究,包括成像硬件,光学,噪声抑制,参数估计,信号检测,数据挖掘,模式匹配和天文学。此外,使用颜色必须介绍恒星测光,光谱过滤和彩色成像等主题。

著录项

  • 作者

    McVittie, Geoffrey.;

  • 作者单位

    Ryerson University (Canada).;

  • 授予单位 Ryerson University (Canada).;
  • 学科 Engineering Aerospace.;Engineering General.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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