首页> 外文期刊>ISPRS Journal of Photogrammetry and Remote Sensing >Investigating the gravitational stability of a radio telescope's reference point using a terrestrial laser scanner: Case study at the Onsala Space Observatory 20-m radio telescope
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Investigating the gravitational stability of a radio telescope's reference point using a terrestrial laser scanner: Case study at the Onsala Space Observatory 20-m radio telescope

机译:使用地面激光扫描仪研究射电望远镜参考点的重力稳定性:以Onsala太空天文台20米射电望远镜为例

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In geodetic very long baseline interferometry, pairs of radio telescopes simultaneously observe signals from quasi stellar objects to estimate the baseline between their reference points. Gravity-dependent variations of the radio telescopes' reference points deteriorate the estimated baseline's accuracy since they lead to signal path variations in the radio telescopes. This study investigates a new concept for determining the stability of a radio telescope's reference point. Differing to previously used strategies, this concept is able to reveal instabilities due to an elevation-dependent tumbling of the telescope independent from the part of the axis offset that is constant for all elevation angles. The new concept is exclusively based on terrestrial laser scanning that at the same time is used for analyzing the main reflector's shape deformation. We applied this concept to the Onsala Space Observatory (OSO) 20-m radio telescope: The results show that we cannot disprove the reference point's stability. In general, our new strategy can be transferred to also investigate the stability of other radio telescopes' reference points. A prerequisite for this strategy is that the laser scanner - that moves between the elevation angles - observes identical objects from different stations. These objects need to be stable during all measurements. In the case of the OSO 20-m radio telescope, the radome is used for this purpose.
机译:在大地测量很长的基线干涉仪中,成对的射电望远镜同时观察来自准恒星物体的信号,以估计其参考点之间的基线。射电望远镜参考点的重力相关变化会降低估计的基线精度,因为它们会导致射电望远镜的信号路径发生变化。这项研究调查了确定射电望远镜参考点稳定性的新概念。与以前使用的策略不同,该概念能够揭示不稳定性,这是由于望远镜的仰角依赖于翻滚而与轴偏移量的一部分无关,该轴偏置对于所有仰角都是恒定的。新概念完全基于地面激光扫描,同时用于分析主反射镜的形状变形。我们将此概念应用于Onsala太空天文台(OSO)20米射电望远镜:结果表明,我们无法证明参考点的稳定性。通常,我们可以采用新策略来研究其他射电望远镜参考点的稳定性。该策略的先决条件是,在仰角之间移动的激光扫描仪可以观察到来自不同站点的相同物体。这些物体在所有测量期间都必须稳定。对于OSO 20米射电望远镜,将天线罩用于此目的。

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