Observable quality assessment of broadband very long baseline interferometry system

Author:

Xu Ming H.ORCID,Anderson James M.,Heinkelmann Robert,Lunz Susanne,Schuh Harald,Wang Guangli

Abstract

AbstractThe next-generation, broadband geodetic very long baseline interferometry system, named VGOS, is developing its global network, and VGOS networks with a small size of 3–7 stations have already made broadband observations from 2017 to 2019. We made quality assessments for two kinds of observables in the 21 VGOS sessions currently available: group delay and differential total electron content ($$\delta $$ δ TEC). Our study reveals that the random measurement noise of VGOS group delays is at the level of less than 2 ps ($$1\,\hbox {ps}\,=\,10^{-12}$$ 1 ps = 10 - 12  s), while the contributions from systematic error sources, mainly source structure related, are at the level of 20 ps. Due to the significant improvement in measurement noise, source structure effects with relatively small magnitudes that are not overwhelming in the S/X VLBI system, for instance 10 ps, are clearly visible in VGOS observations. Another critical error source in VGOS observations is discrete delay jumps, for instance, a systematic offset of about 310 ps or integer multiples of that. The predominant causative factor is found to be related to source structure. The measurement noise level of $$\delta $$ δ TEC observables is about 0.07 TECU, but the systematic effects are five times larger than that. A strong correlation between group delay and $$\delta $$ δ TEC observables is discovered with a trend of 40 ps/TECU for observations with large structure effects; there is a second trend in the range 60–70 ps/TECU when the measurement noise is dominant.

Funder

Aalto University

Publisher

Springer Science and Business Media LLC

Subject

Computers in Earth Sciences,Geochemistry and Petrology,Geophysics

Reference21 articles.

1. Altamimi Z, Rebischung P, Métivier L, Collilieux X (2016) ITRF2014: a new release of the international terrestrial reference frame modeling nonlinear station motions. J Geophys Res (Solid Earth) 121(8):6109–6131. https://doi.org/10.1002/2016JB013098

2. Anderson JM, Xu MH (2018) Source structure and measurement noise are as important as all other residual sources in geodetic VLBI combined. J Geophys Res (Solid Earth) 123(11):10,162–10,190, https://doi.org/10.1029/2018JB015550

3. Behrend D, Thomas C, Gipson J, Himwich E, Le Bail K (2020) On the organization of CONT17. J Geodesy 94(10):100. https://doi.org/10.1007/s00190-020-01436-x

4. Bolotin S, Baver K, Bolotina O, Gipson J, Gordon D, Le Bail K, MacMillan D (2019) The source structure effect in broadband observations. In: Haas R, Garcia-Espada S, López Fernández JA (eds) Proceedings of the 24th European VLBI group for geodesy and astrometry working meeting, pp 224–228

5. Cappallo R (2014) Correlating and fringe-fitting broadband VGOS data. In: International VLBI service for geodesy and astrometry 2014 general meeting proceedings: ”VGOS: the new VLBI network, pp 91–96. https://ivscc.gsfc.nasa.gov/publications/gm2014/019_Cappallo.pdf

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