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Characterization of the ASPIICS/OPSE metrology sub-system and PSF centroiding procedure

机译:表征显学/ OPSE计量子系统和PSF绝对程序

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Metrology in diluted systems for space applications is one of the most important technology research fields that in recent years have raised increasing interest. Many applications of astronomical observation techniques, as coronography and interferometry get great benefit when moved in space and the employment of diluted systems represents a milestone to step-over in astronomical research. In this work, we present the Optical Position Sensors Emitter (OPSE) metrological sub-system on-board of the PROBA3. PROBA3 is an ESA technology mission that will test in-orbit many metrology techniques for the maintenance of a Formation Flying with two satellites, in this case an occulter and a main satellite housing a coronagraph named ASPIICS, kept at an average inter-distance of 144m. The scientific task is the observation of the Sun's Corona at high spatial and temporal resolution down to 1.08R_⊙. The OPSE will monitor the relative position of the two satellites and consists of 3 emitters positioned on the rear surface of the occulter, that will be observed by the coronagraph itself. A Centre of Gravity (CoG) algorithm is used to monitor the emitter's PSF at the focal plane of the Coronagraph retrieving the Occulter position with respect to the main spacecraft. The 3σ location target accuracy is 300μm for lateral movement and 21cm for longitudinal movements. A description of the characterization tests on the OPSE LED sources, and of the design for a laboratory set-up for on ground testing is given with a preliminary assessment of the performances expected from the OPSE images centroiding algorithm.
机译:空间应用稀释系统中的计量是最重要的技术研究领域之一,近年来提出了越来越多的利益。天文观测技术的许多应用,因为在空间中移动时,核心造影和干涉测量仪得到很大的益处,稀释系统的就业代表了天文学研究中介入的里程碑。在这项工作中,我们介绍了Proba3的光学位置传感器发射器(OPSE)计量子系统。 Proba3是一种ESA技术使命,将对轨道进行测试,用于维护两颗卫星的形成飞行,在这种情况下,发生了一个名为Aspiics的调节器和主卫星的卫星,保持在144米的平均间间距。科学任务是在高空间和时间分辨率下观察太阳电晕,下降至1.08℃。 OPSE将监测两颗卫星的相对位置,并且由3位放置在发生的后表面上的发射器组成,该发射器将由调节件本身观察到。重心(COG)算法用于监测Coronagraph的焦平面的发射器的PSF在检索运动位置相对于主宇宙飞船。 3σ位置目标精度为300μm,用于横向运动和21cm,用于纵向运动。对OPSE LED源上的表征测试的描述,以及用于接地测试的实验室设置的设计的描述,并初步评估了OPSE图像精心算法的性能。

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