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Sub-arcminute pointing from a balloonborne platform

机译:来自Balloonborne平台的次Arcminute指向

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We describe the design and performance of the pointing and aspect reconstruction system on the Gamma-Ray Arcminute Telescope Imaging System. The payload consists of a 4m long gamma-ray telescope, capable of producing images of the gamma-ray sky at an angular resolution of 2 arcminutes. The telescope is operated at an altitude of 40km in azimuth/elevation pointing mode. Using a variety of sensor, including attitude GPS, fiber optic gyroscopes, star and sun trackers, the system is capable of pointing the gamma-ray payload to within an arc-minute from the balloon borne platform. The system is designed for long-term autonomous operation and performed to specification throughout a recent 36 hour flight from Alice Springs, Australia. A star tracker and pattern recognition software developed for the mission permit aspect reconstruction to better than 10 arcseconds. The narrow field star tracker system is capable of acquiring and identifying a star field without external input. We present flight data form all sensors and the resultant gamma-ray source localizations.
机译:我们描述了伽马射线弧形望远镜成像系统上指向和方向重建系统的设计和性能。有效载荷包括4米长的伽马射线望远镜,能够以2个Arcminutes的角度分辨率产生伽马射线天空的图像。望远镜在方位角/高度指向模式下以40km的高度操作。使用各种传感器,包括姿态GPS,光纤陀螺仪,星和太阳跟踪器,该系统能够将伽马射线有效载荷指向气球的平台弧分钟内。该系统专为长期自主运行而设计,并在最近的36小时飞行中从Alice Springs,Alice Springs,Alice Springs。为特派团的明星跟踪器和模式识别软件开发,使得方向重建以优于10个弧形。窄场明星跟踪器系统能够获取和识别无需外部输入的星形字段。我们呈现飞行数据,形成所有传感器和所得伽马射线源本地化。

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