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RadioAstron orbit determination and evaluation of its results using correlation of space-VLBI observations

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arxiv 1812.01623 v4 pith:YBR3JYXG submitted 2018-12-04 astro-ph.IM

classification astro-ph.IM
keywords orbitradioastronspace-vlbimissionradiospacetelescopeaccuracy
verification ladder T0 review T1 audit T2 compute T3 formal

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A crucial part of a space mission for very-long baseline interferometery (VLBI), which is the technique capable of providing the highest resolution images in astronomy, is orbit determination of the mission's space radio telescope(s). In order to successfully detect interference fringes that result from correlation of the signals recorded by a ground-based and a space-borne radio telescope, the propagation delays experienced in the near-Earth space by radio waves emitted by the source and the relativity effects on each telescope's clock need to be evaluated, which requires accurate knowledge of position and velocity of the space radio telescope. In this paper we describe our approach to orbit determination (OD) of the RadioAstron spacecraft of the RadioAstron space-VLBI mission. Determining RadioAstron's orbit is complicated due to several factors: strong solar radiation pressure, a highly eccentric orbit, and frequent orbit perturbations caused by the attitude control system. We show that in order to maintain the OD accuracy required for processing space-VLBI observations at cm-wavelengths it is required to take into account the additional data on thruster firings, reaction wheel rotation rates, and attitude of the spacecraft. We also investigate into using the unique orbit data available only for a space-VLBI spacecraft, i.e. the residual delays and delay rates that result from VLBI data processing, as a means to evaluate the achieved OD accuracy. We present the results of the first experience of OD accuracy evaluation of this kind, using more than 5,000 residual values obtained as a result of space-VLBI observations performed over 7 years of the RadioAstron mission operations.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Extremely long baseline interferometry with Origins Space Telescope

    astro-ph.IM 2019-09 conditional novelty 5.0 of 10

    A concept study showing that the Origins Space Telescope at L2 could join ground arrays to form extremely long baselines, resolving black hole shadows and photon ring substructure across cosmic history.

  2. Studying black holes on horizon scales with space-VLBI

    astro-ph.IM 2019-09 unverdicted novelty 4.0 of 10

    A single 3.5-meter low-Earth-orbit dish could extend the Event Horizon Telescope to 690 GHz, enabling time-resolved movies of Sgr A* and spatially resolving more than 20 black hole shadows.

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