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Optimization Technique for Pseudorange Multipath Mitigation Using Different Signal Selection Methods


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Dammalage T.L., Satirapod C, Kibe S. & Ogaja C. (2010) Wavelet transform application to C/A Code multipath mitigation at GPS reference stations for improved differential GPS corrections, Survey Review, Vol. 42, 240–255.10.1179/003962610X12572516251925Search in Google Scholar

Groves, P. D. (2013). GNSS Solutions: Multipath vs. NLOS signals. How Does Non-Line-of-Sight Reception Differ From Multipath Interference, Inside GNSS, Vol.8, 40–44.Search in Google Scholar

Groves, P.D., Height, Z. J., Rudi M. & Strode P. (2013). A Portfolio Approach to NLOS and Multipath Mitigation in Dense Urban Area. Proc. of the 26th International Technical Meeting of the Satellite Division of the Institute of Navigation 2013, Nashville, U.S.A, 3231–3247.Search in Google Scholar

Hsu, L.T., Jan, S.S., Groves, P. & Kubo, N. (2016) Multiple Faulty GNSS Measurement Exclusion based on Consistency Check in Urban Canyons, IEEE Sensors Journal, Vol. 17, 1909–1917. doi:10.1109/JSEN.2017.265435910.1109/JSEN.2017.2654359Search in Google Scholar

Iwase, T., Susuki, N. & Watanabe, Y. (2013) Estimation and Exclusion of Multipath Range Error for Robust Positioning, GPS Solutions, Vol. 17, 53–62. doi:10.1007/s10291-012-0260-110.1007/s10291-012-0260-1Search in Google Scholar

Lin, K.Q., Deng, Z.L. & Yin, L. (2018) Effective Multipath Mitigation Methods for RTK in Urban Environments. Proc. of China Satellite Navigation Conference (CSNC) 2018, Harbin, China, 565–576.10.1007/978-981-13-0029-5_49Search in Google Scholar

Matera E.R., Peña A.J.G., Julien, O., Milner, C. & Ekambi, B. (2019) Characterization of Line-of-Sight and Non-Line-of-Sight Pseudorange Multipath Errors in Urban Environment for GPS and Galileo, Proc. of the 2019 International Technical Meeting of The Institute of Navigation, Reston, Virginia, U.S.A., January, 177–196.10.33012/2019.16687Search in Google Scholar

Sánchez, J.S., Gerhmann, A., Thevanon, P. & Brocard, P. (2017) Use of a Fisheye Camera for GNSS NLOS Exclusion and Characterization in Urban Environments, Proc. of the 2016 International Technical Meeting of The Institute of Navigation, Monterey, California, U.S.A., January, 283–292.10.33012/2016.13404Search in Google Scholar

Satirapod C. & Rizos C. (2005) Multipath Mitigation by Wavelet Analysis for GPS Base Station Applications, Survey Review, Vol. 38, 2–10.10.1179/sre.2005.38.295.2Search in Google Scholar

Špánik P. & Hefty J. (2017) Multipath Detection with the Combination of SNR Measurements – Example from Urban Environment, GEODESY AND CARTOGRAPHY, Vol. 66, 305–315.10.1515/geocart-2017-0020Search in Google Scholar

Suzuki, T. (2011) High - Accuracy GPS and GLONASS Positioning by Multipath Mitigation Using Omnidirectional Infrared Camera, IEEE International Conference on Robotic and Automation, 311–316. doi:10.1109/ICRA.2011.598042410.1109/ICRA.2011.5980424Search in Google Scholar

Suzuki, T. & Kubo, N. (2015) Simulation of GNSS Satellite Availability in Urban Environments Using Google Earth, Proc. of the ION 2015 Pacific PNT Meeting, Honolulu, Hawaii, U.S.A., April, 1069–1079.Search in Google Scholar

Takasu T. (2013) GNSS RTKLIB software Version 2.4.2 Manual. Retrieved from http://www.rtklib.com/prog/manual_2.4.2.pdf.Search in Google Scholar

Teunissen P. J.G. & Montenbruck O. Eds (2017). Springer Handbook of Global Navigation Satellite Systems: Switzerland. doi: 10.1007/978-3-319-42928-1.10.1007/978-3-319-42928-1Search in Google Scholar

Tokura, H. & Kubo, N. (2014) Using Multiple GNSS Constellations with Strict Quality Constraints for More Accurate Positioning in Urban Environments, Scientific Research, Vol. 5, 85–96. doi:10.4236/pos.2014.5401110.4236/pos.2014.54011Search in Google Scholar

Tokura H. & Kubo N. (2017) Efficient Satellite Selection Method for Instantaneous RTKGNSS in Challenging Environments. Trans. Japan Soc. Aero. Space Sci., Vol. 60, 221–229. doi:10.2322/tjsass.60.22110.2322/tjsass.60.221Search in Google Scholar

Tongleamnak, S. & Nagakai, M. (2017) Simulation of GNSS Availability in Urban Environments Using a Paranomic Image Dataset. International Journal of Navigation and Observation, Vol. 2017. doi:10.1155/2017/804715810.1155/2017/8047158Search in Google Scholar

Townsend B.R. & Fenton P.C. (1994) A Practical Approach to the Reduction of Pseudorange Multipath Errors in an L1 GPS Receiver. Proc. of the 7th International Technical Meeting of the Satellite Division of The Institute of Navigation 1994, Salt Lake City, UT, U.S.A., September, 143–148.Search in Google Scholar

Wang, E., Cai, M., & Pang, T. (2012) A Simple and Effective GPS Receiver Autonomous Integrity Monitoring and Fault Isolation Approach. IEEE, 657-660. doi:10.1109/ICCECT.2012.14510.1109/ICCECT.2012.145Search in Google Scholar

eISSN:
2083-6104
Sprache:
Englisch
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4 Hefte pro Jahr
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