Improving GNSS data accuracy: Implementing Non-tidal Corrections at the Observation-level in GNSS data
摘要
Non-tidal loading (NTL) displacements contribute to stochastic variability in Global Navigation Satellite Systems (GNSS) coordinate time series. In this study, we investigate the influence of non-tidal atmospheric, atmospheric-ocean, and atmospheric-ocean-hydrology loading displacement corrections on the stochastic characteristics of GNSS 3D time series at permanent GNSS stations in Finland. We apply corrections for NTL at the observation-level as well as post-processing. We qualitatively compared the time-series statistics of NTL-corrections and observed weighted RMS reduction rates of up to 20% and 58% for the horizontal and vertical coordinates, respectively. After applying NTL corrections, substantial improvements were evident in the vertical component, with the power-law noise amplitude nearly halved from approximately