DATA: Bridging Astronomical, Astrometric and Geodetic Scheduling for VGOS

Beskrivning

Very Long Baseline Interferometry (VLBI) experiments are organized within the geodetic, astrometric, and astronomical communities for different applications, requiring different observation strategies adopted in scheduling. Currently, the next-generation geodetic and astrometric VLBI Global Observing System (VGOS) is being established. Over the last years, evidence was presented that the delays introduced by the angular structure of the geodetic radio sources contribute significantly to the VGOS observable error budget. Consequently, correcting these structure delays through imaging will play an important part in the future, requiring a different scheduling approach. Within this work, a new source-centric VLBI scheduling approach is presented for improved imaging capabilities of geodetic observations. While the potential for astronomical imaging is improved significantly, the geodetic and astrometric performance is not degraded. The algorithm is tested for a seven- and nine-station network and compared with classical geodetic schedules. Monte-Carlo simulations are utilized to determine the expected geodetic and astrometric parameter precision and two independent processing pipelines are used to assess the potential for astronomical source imaging. Based on the simulation results, it is revealed that with the new scheduling approach twice as many sources can be properly imaged. Furthermore, the precision of the Earth orientation parameter estimates is improved on average by 15 %, while the source position coordinate estimates are on average improved by 50 %. Tests with two VGOS networks of twelve and 29 antennas further reveal that the scheduling approach is also applicable to future VGOS networks.
Visa mer

Publiceringsår

2023

Typ av data

Upphovspersoner

Department of Electronics and Nanoengineering

Arnaud Collioud - Upphovsperson

B. Soja - Upphovsperson

Matthias Schartner - Upphovsperson

Minghui Xu Orcid -palvelun logo - Upphovsperson

Patrick Charlot - Upphovsperson

ETH Zürich - Utgivare

Helmholtz-Zentrum Potsdam Deutsches GeoForschungsZentrum GFZ - Medarbetare

Swiss Federal Institute of Technology - Medarbetare

Université de Bordeaux - Medarbetare

Projekt

Övriga uppgifter

Vetenskapsområden

Rymdvetenskap och astronomi

Språk

Öppen tillgång

Öppet

Licens

Creative Commons Attribution 4.0 International (CC BY 4.0)

Nyckelord

Ämnesord

Temporal täckning

undefined

Relaterade till denna forskningsdata