Please use this identifier to cite or link to this item: https://dspace.iiti.ac.in/handle/123456789/3663
Title: High-accuracy baseline estimation using differential NavIC and GPS
Authors: Althaf, A.
Hablani, Hari
Keywords: Errors;Radioactivity measurement;Baseline estimation;Double differences;Elevation mapping;High-accuracy;Pseudorange errors;Recursive least square (RLS);Short base lines;Single differences;Error statistics
Issue Date: 2020
Publisher: Institute of Navigation
Citation: Althaf, A., & Hablani, H. (2020). High-accuracy baseline estimation using differential NavIC and GPS. Paper presented at the ION 2020 International Technical Meeting Proceedings, 454-467. doi:10.33012/2020.17155
Abstract: The estimation accuracy of a short baseline with NavIC L5 and S1 and GPS L1 differential pseudoranges from the primary service area is presented. The mean of the single-difference (SD) NavIC L5 and S1 pseudorange errors differ by 45 cm. Using single-epoch least squares, the baseline estimated using an elevation mapping function with the SD pseudoranges for NavIC L5 has an accuracy (2-sigma) of 0.78 m (east) and 1.6 m (north) compared to the GPS L1 accuracy (2-sigma) of 0.77 m (east) and 1.42 m. With recursive least squares, the accuracy of the baseline with NavIC L5 is 0.26 m (east) and 0.24 m (north). The baseline estimated with NavIC S1 pseudorange is less accurate by a factor of 1.5 compared to NavIC L5. The baseline estimation error statistics with NavIC double-difference pseudoranges using single-epoch least squares are same as the error statistics with SD NavIC pseudoranges. © 2020 ION 2020 International Technical Meeting Proceedings. All rights reserved.
URI: https://doi.org/10.33012/2020.17155
https://dspace.iiti.ac.in/handle/123456789/3663
ISBN: 0936406240; 9780936406244
Type of Material: Conference Paper
Appears in Collections:Department of Astronomy, Astrophysics and Space Engineering

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