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High accuracy attitude determination and control of the diva mission

机译:高精度姿态确定与控制

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Small satellite missions for scientific purpose gained more and more importance during the last years in Germany. There are several missions inorbit or scheduled for launch in the near future like GFZ (1995), Equator-S (in-orbit, launch Dec 1997), ABRIXAS (launch April 1999) and other missions are on the horizon. One of these highly ambitious projects is the small astrometry satellite DIVA (German Interferometer for Multichannel Photometry and Astrometry). DIVA will be the successor of the HIPPAR-COS satellite and a pathfinder to much larger missions like GAIA (Global Astrometric Interferometer for Astrophysics), FAME (Fizeau Astrometric Mapping Explorer) and SIM (Space Interferometry Mission). This work deals with the recent results from spacecraft dynamics simulations performed for the 248kg DIVA satellite. The attitude determination requirements are quite ambitious for a small satellite mission, while the control requirements of 5arcmin are moderate. the attitude determination system has to provide attitude information to the scientific payload with an accuracy of 1arcsec in scan direction and 3arcsec perpendicular to it using a Kalman filter that relies on attitude sensors and the scientific telescope. The scientific goal is a post mission scientific attitude accuracy of about 0.8mas. The attitude control system relies on a cold gas system for first acquisition, safe mode coarse attitude control. For fine attitude control field emission electric propulsion thrusters (FEEP's) are investigated.
机译:在过去的几年中,用于科学目的的小型卫星任务越来越重要。有数个在轨或计划在不久的将来发射的任务,如GFZ(1995年),Equator-S(在轨,1997年12月发射),ABRIXAS(1999年4月发射)和其他任务正在酝酿中。这些高度雄心勃勃的项目之一是小型天文卫星DIVA(用于多通道测光和天文测量的德国干涉仪)。 DIVA将是HIPPAR-COS卫星的继任者,并且是更大的任务的探路者,例如GAIA(全球天体物理干涉仪),FAME(Fizeau占星测绘仪)和SIM(太空干涉仪任务)。这项工作处理的是对248千克DIVA卫星进行的航天器动力学仿真的最新结果。对于小型卫星任务,姿态确定要求非常雄心勃勃,而5arcmin的控制要求中等。姿态确定系统必须使用依靠姿态传感器和科学望远镜的卡尔曼滤波器,以科学方向的有效载荷向科学有效载荷提供姿态信息,在扫描方向上的精度为1arcsec,与垂直方向的精度为3arcsec。科学目标是任务后科学态度精度约为0.8mas。姿态控制系统依赖于冷气系统进行首次采集,安全模式的粗略姿态控制。为了进行精细姿态控制,研究了场发射电推进推进器(FEEP's)。

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