Bounding the Residual Tropospheric Error by Interval Analysis

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dc.identifier.uri http://dx.doi.org/10.15488/16508
dc.identifier.uri https://www.repo.uni-hannover.de/handle/123456789/16635
dc.contributor.author Su, Jingyao
dc.contributor.author Schön, Steffen
dc.contributor.editor Freymueller, Jeffrey T.
dc.contributor.editor Sánchez, Laura
dc.date.accessioned 2024-03-06T06:29:35Z
dc.date.available 2024-03-06T06:29:35Z
dc.date.issued 2022
dc.identifier.citation Su, J.; Schön, S.: Bounding the Residual Tropospheric Error by Interval Analysis. In: Freymueller, Jeffrey T.; Sánchez, Laura (Eds.): Geodesy for a Sustainable Earth : Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy. Berlin ; Heidelberg : Springer, 2023 (International Association of Geodesy symposia : IAG ; 154), S. 367-376. DOI: https://doi.org/10.1007/1345_2022_184
dc.description.abstract GNSS integrity monitoring requires proper bounding to characterize all ranging error sources. Unlike classical approaches based on probabilistic assumptions, our alternative integrity approach depends on deterministic interval bounds as inputs. The intrinsically linear uncertainty propagation with intervals is adequate to describe remaining systematic uncertainty, the so-called imprecision. In this contribution, we make a proposal on how to derive the required intervals in order to quantify and bound the residual error for empirical troposphere models, based on the refined sensitivity analysis via interval arithmetic. We evaluated experimentally the Saastamoinen model with (i) a priori ISO standard atmosphere, and (ii) on-site meteorological measurements from IGS and Deutscher Wetterdienst (DWD) stations as inputs. We obtain consistent and complete enclosure of residual ZPD errors w.r.t IGS ZPD products. Thanks to the DWD dense network, interval maps for meteorological parameters and residual ZPD errors are generated for Germany as by-products. These experimental results and products are finally validated, taking advantage of the high-quality tropospheric delays estimated by the Vienna Ray Tracer. Overall, the results indicate that our strategy based on interval analysis successfully bounds tropospheric model uncertainty. This will contribute to a realistic uncertainty assessment of GNSS-based single point positioning. eng
dc.language.iso eng
dc.publisher Berlin ; Heidelberg : Springer
dc.relation.ispartof Geodesy for a Sustainable Earth : Proceedings of the 2021 Scientific Assembly of the International Association of Geodesy
dc.relation.ispartofseries International Association of Geodesy symposia : IAG ; 154
dc.rights CC BY 4.0 Unported
dc.rights.uri https://creativecommons.org/licenses/by/4.0
dc.subject Error bounding eng
dc.subject Global navigation satellite systems eng
dc.subject Integrity eng
dc.subject Interval analysis eng
dc.subject Residual tropospheric error eng
dc.subject.classification Konferenzschrift ger
dc.subject.ddc 550 | Geowissenschaften
dc.title Bounding the Residual Tropospheric Error by Interval Analysis eng
dc.type BookPart
dc.type Text
dc.relation.essn 2197-9359
dc.relation.isbn 978-3-031-29506-5
dc.relation.isbn 978-3-031-29509-6
dc.relation.isbn 978-3-031-29507-10
dc.relation.issn 0939-9585
dc.relation.doi https://doi.org/10.1007/1345_2022_184
dc.bibliographicCitation.volume 154
dc.bibliographicCitation.date 2023
dc.bibliographicCitation.firstPage 367
dc.bibliographicCitation.lastPage 376
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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