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The Design and Performance of the Gondola Pointing System for the Sunrise II Balloon-Borne Stratospheric Solar Observatory

机译:日出II型气球-伯恩平流层太阳天文台缆车定位系统的设计与性能。

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With its 1m aperture, the Sunrise Balloon-Borne Stratospheric Solar Observatory was the largest space-based solar telescope. It was designed to study the magneto-convective processes of the sun at resolutions higher than 100km and the payload took data during a flight from June 12 to June 17, 2013. To achieve its science requirements, the telescope had to point to an accuracy of 26′′ for extended periods of time. Pointing of the instrument was effected by the Sunrise Pointing System (PS). The PS used measurements provided by a Lockheed Intermediate Sun Sensor (LISS) and passed the data through a cascade of up to four digital filters to calculate the best voltages to drive the azimuthal and elevation motors. All filter settings could be modified in flight to adapt to changing conditions. Using this design, the PS met its requirements, pointing the instrument with an accuracy better than 26′′ for 60% of the flight and for continuous time periods of up to 99min. In this paper, we detail the design and perfor...
机译:日出气球-伯恩平流层太阳天文台的孔径为1m,是最大的太空太阳望远镜。它旨在研究分辨率高于100 km的太阳的磁对流过程,并且有效载荷在2013年6月12日至6月17日的飞行中获取了数据。为了达到其科学要求,望远镜必须指出其精度为26''延长了时间。仪器的对准是由日出对准系统(PS)进行的。 PS使用了洛克希德中间太阳传感器(LISS)提供的测量值,并将数据通过最多四个数字滤波器的级联传递,以计算最佳电压来驱动方位角和仰角电机。可以在飞行中修改所有过滤器设置以适应不断变化的条件。使用这种设计,PS可以满足其要求,在60%的飞行时间内以及长达99分钟的连续时间段内,仪器的精度都优于26''。在本文中,我们详细介绍了设计和性能。

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