Quad-Band Multi-Constellation Global Navigation Satellite System Receiver Development Platform with System-on-Chip Architecture

Author:

Saad Muhammad1,Garzia Fabio1ORCID,Wu Szu-Jung1,Cortés Iñigo1ORCID,Förster Frank1,Overbeck Matthias1ORCID,Urquijo Santiago1ORCID,Felber Wolfgang1ORCID

Affiliation:

1. Satellite Based Positioning Systems Department, Fraunhofer IIS, Nordostpark 84, 90411 Nuremberg, Germany

Publisher

MDPI

Reference13 articles.

1. European Union Agency for the Space Programme (EUSPA) (2022). EUSPA EO and GNSS Market Report, European Union Agency for the Space Programme (EUSPA). Market Report Issue 1.

2. Overbeck, M., Garzia, F., Popugaev, A., Kurz, O., Forster, F., Felber, W., Ayaz, A.S., Ko, S., and Eissfeller, B. (2015, January 14–18). GOOSE–GNSS Receiver with an Open Software Interface. Proceedings of the 28th International Technical Meeting of The Satellite Division of the Institute of Navigation (ION GNSS 2015), Tampa, FL, USA.

3. Cortes, I., Van der Merwe, J.R., Rügamer, A., and Felber, W. (2020, January 20–23). Adaptive loop-bandwidth control algorithm for scalar tracking loops. Proceedings of the IEEE/ION PLANS, Portland, OR, USA.

4. Cortés, I., van der Merwe, J.R., Nurmi, J., Rügamer, A., and Felber, W. (2021). Evaluation of Adaptive Loop-Bandwidth Tracking Techniques in GNSS Receivers. Sensors, 21.

5. Cortés, I., van der Merwe, J.R., Lohan, E.S., Nurmi, J., and Felber, W. (2023). Evaluation of Low-Complexity Adaptive Full Direct-State Kalman Filter for Robust GNSS Tracking. Sensors, 23.

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