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EUROPEAN ASTRIX~TM FOG IN-ORBIT HERITAGE

机译:欧洲天空〜TM雾沟遗传学

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In the early 2000s, ASTRIUM SAS, in collaboration with iXBlue (formerly IXSEA), a French SME, developed with CNES and ESA support, an inertial reference unit (IRU) family for a wide range of space applications. These fully European products, called "ASTRIX~(TM)", are based on solid-state (FOG) technology. The first flight models were delivered in 2006 and 2007, and production is now running smoothly. These IRUs have been selected by a range of applications as varied as PLANCK, PLEIADES, AEOLUS, GAIA, EURO-STAR, GALILEO IOV, SENTINEL1&2, JPSS_1 etc. covering the different orbit types (LEO, MEO, GEO and Lagrange). They fully benefit from the unequalled potential of FOG technology and from its particularly good suitability to high performance space applications requirements. The ASTRIX family currently comprises three fully qualified products, namely ASTRIX200, ASTRIX 120 and ASTRIX 120HR, which are shortly presented in this paper. A total of 22 FOG channels, cumulating to date 170 000 operating hours, are currently in orbit (latest being with PLEIADES ASTRIX200 launched on Soyouz, Kourou, on Dec 11). Up to Feb. 2012, the PLANCK (L2) ASTRIX-120 has continuously been in operation for two and half years and the COMS (GEO) ASTRIX120HR for one and half year. After having briefly introduced the origin of the product development, the paper presents the observed in-orbit performances of these gyros in detail. The differences between these two missions, their different orbits and use of gyros give a particularly interesting feedback on the excellent behavior of this technology. One of the 4 PLANCK FOGs is oriented perpendicularly to the spin axis, making it possible to accurately characterize its measurement noise, and confirming that this remains unchanged with regard to ground acceptance test results. The COMS gyros are part of the spacecraft AOCS control loop, and thus are a major contributor to the excellent mission performances. During their use in the transfer phase, their high accuracy gave unprecedented visibility of micro-vibration and flexure in the various equipments and instruments, as well as the effects of spacecraft outgassing. Very positive lessons learnt from this in-orbit heritage are discussed. The paper concludes by briefly presenting the ASTRIX family latest development, the ASTRIX3M2, a promising three-axis, cost-competitive, high-performance IMU.
机译:在21世纪初,ASTRIUM SAS,与iXBlue(以前IXSEA),法国SME合作,开发了CNES和ESA支持,惯性基准组件(IRU)家族适用范围广的空间应用。这些全欧洲的产品,被称为“阿斯特里克斯〜(TM)”,是基于固态(FOG)技术。第一个飞行模型在2006年和2007年交付,而现在生产平稳运行。这些IRUS已经被广泛的应用选择为改变作为PLANCK,PLEIADES,AEOLUS,GAIA,EURO-STAR,GALILEO IOV,SENTINEL1&2,JPSS_1等覆盖不同轨道类型(LEO,MEO,和GEO拉格朗日)。他们充分受益于光纤陀螺技术的无与伦比的潜力,并从它的特别好适合于高性能空间应用要求。该阿斯特里克斯家族目前包括三个完全合格的产品,即ASTRIX200,阿斯特里克斯120和阿斯特里克斯120小时,这是本文提出不久。共有22个FOG通道,累积到日期170 000运行时间,目前都在轨道(最新是与PLEIADES ASTRIX200发动Soyouz,库鲁年12月11)。截至2012年2月,普朗克(L2)阿斯特里克斯-120已经连续运行了两年半和一年半的COMS(GEO)ASTRIX120HR。在简要介绍后产品开发的由来,提出所观察到的在轨将详细介绍这些陀螺仪的性能。这两个任务之间的差异,各自不同的轨道和使用陀螺仪提供关于这项技术的优异表现一个特别有趣的反馈。一个4个普朗克光纤陀螺的被定向成垂直于自旋轴,使得它能够准确地表征其测量噪声,和确认该遗体对于地面验收测试结果不变。该COMS陀螺仪是飞船AOCS控制回路的一部分,因此是一个主要贡献者,以优良的使命表演。期间它们在传送阶段的使用,它们的高精确度给了前所未有的各种设备和仪器的微振动和弯曲的可视性,以及航天器脱气的效果。从这个在轨遗产学得非常积极的经验进行了讨论。本文通过简要介绍了该阿斯特里克斯家族的最新发展,ASTRIX3M2,一个有前途的三轴,具有成本竞争力的高性能IMU的结论。

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