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Research Article

Structure and performance analysis of fusion positioning system with a single 5G station and a single GNSS satellite

ORCID Icon, , ORCID Icon, ORCID Icon &
Pages 94-106 | Received 13 May 2022, Accepted 31 Oct 2022, Published online: 17 Jan 2023

References

  • Abu-Shaban, Z., X. Zhou, T. Abhayapala, G. Seco-Granados, and H. Wymeersch. 2018. “Error Bounds for Uplink and Downlink 3D Localization in 5G Millimeter Wave Systems.” IEEE Transactions on Wireless Communications 17 (8): 4939–4954. doi:10.1109/TWC.2018.2832134.
  • Aumayer, B. M., M. G. Petovello, and G. Lachapelle. 2014. “Development of a Tightly Coupled Vision/GNSS System”. In 27th International Technical Meeting of The Satellite Division of the Institute of Navigation, 2202–2201, Tampa, September 8–12.
  • Cong, L., A. I. Abidat, and Z. Tan. 2006. “Analysis and Simulation of the GDOP of Satellite Navigation.” Acta Electronica Sinica 34 (12): 2204–2208.
  • Del Peral-Rosado, J. A., O. Renaudin, C. Gentner, R. Raulefs, E. Dom´ınguez-Tijero, A. Fernández-Cabezas, F. Fernando Blázquez-Luengo, et al. 2019. “Physical-Layer Abstraction for Hybrid GNSS and 5G Positioning Evaluations”. In IEEE 90th Vehicular Technology Conference (VTC2019-Fall), 1–6, Honolulu, September 22–25. doi:10.1109/VTCFall.2019.8891529.
  • Del Peral-Rosado, J. A., F. Gunnarsson, S. Dwivedi, S. M. Razavi, O. Renaudin, J. A. López-Salcedo, and G. Seco-Granados. 2020. “Exploitation of 3D City Maps for Hybrid 5G RTT and GNSS Positioning Simulations”. In IEEE International Conference on Acoustics, Speech and Signal Processing (ICASSP), 9205–9209, Barcelona, May 4–8. doi:10.1109/ICASSP40776.2020.9053157.
  • Del Peral-Rosado, J. A., R. Raulefs, J. A. López-Salcedo, and G. Seco-Granados. 2018. “Survey of Cellular Mobile Radio Localization Methods: From 1G to 5G.” IEEE Communications Surveys Tutorials 20 (2): 1124–1148. doi:10.1109/COMST.2017.2785181.
  • Del Peral-Rosado, J. A., J. Saloranta, G. Destino, J. López-Salcedo, and G. Seco-Granados. 2018. “Methodology for Simulating 5G and GNSS High-Accuracy Positioning.” Sensors 18 (10): 3220. doi:10.3390/s18103220.
  • Destino, G., J. Saloranta, G. Seco-Granados, and H. Wymeersch. 2018. “Performance Analysis of Hybrid 5G-GNSS Localization”. In 52nd Asilomar Conference on Signals, Systems, and Computers, 8–12, Pacific Grove, December 25. doi:10.1109/ACSSC.2018.8645207.
  • Ferre, R. M., G. Seco-Granados, and E. S. Lohan. 2019. ”Positioning Reference Signal Design for Positioning via 5G.” In XXXVth Finnish URSI Convention on Radio Science, Tampere, October 18.
  • Garcia, N., H. Wymeersch, E. G. Larsson, A. M. Haimovich, and M. Coulon. 2017. “Direct Localization for Massive MIMO.” IEEE Transactions on Signal Processing 65 (10): 2475–2487. doi:10.1109/TSP.2017.2666779.
  • Gentner, C., S. Sand, and A. Dammann. 2012. “OFDM Indoor Positioning Based on TDOAs: Performance Analysis and Experimental Results”. In 2012 International Conference on Localization and GNSS, 1–7, Starnberg, June 25–27. doi: 10.1109/ICL-GNSS.2012.6253136
  • Guo, C., J. Yu, W. Guo, Y. Deng, and J. Liu. 2020. ”Research on Simulation Method of 5G Location Based on Channel Modeling.” In 6GN for Future Wireless Networks, 278–297, Tianjin, August 15–16. 10.1007/978-3-030-63941-9_21
  • Hiltunen, T., J. Turkka, R. Mondal, and T. Ristaniemi. 2015. “Performance Evaluation of LTE Radio Fingerprint Positioning with Timing Advancing”. In 10th International Conference on Information, Communications and Signal Processing (ICICS), 1–5, Singapore, December 2–4. doi:10.1109/ICICS.2015.7459984.
  • Keating, R., M. Säily, J. Hulkkonen, and J. Karjalainen. 2019. “Overview of Positioning in 5G New Radio”. In 16th International Symposium on Wireless Communication Systems (ISWCS), 320–324, Oulu, August 27–30. doi: 10.1109/ISWCS.2019.8877160.
  • Koivisto, M., M. Costa, J. Werner, K. Heiska, J. Talvitie, K. Leppanen, V. Koivunen, and M. Valkama. 2017. “Joint Device Positioning and Clock Synchronization in 5G Ultra-Dense Networks.” IEEE Transactions on Wireless Communications 16 (5): 2866–2881. doi:10.1109/TWC.2017.2669963.
  • Lin, X., and N. Lee. 2021. 5G and Beyond: Fundamentals and Standards. Cham: Springer. doi:10.1007/978-3-030-58197-8.
  • Liu, Z., L. Chen, X. Zhou, N. Shen, and R. Chen. 2022. “Multipath Tracking with LTE Signals for Accurate TOA Estimation in the Application of Indoor Positioning.” Geo-Spatial Information Science 1–13. doi:10.1080/10095020.2022.2108344.
  • Martellucci, A., and R. P. Cerdeira. 2009. “Review of Tropospheric, Ionospheric and Multipath Data and Models for Global Navigation Satellite Systems”. In 2009 3rd European Conference on Antennas and Propagation, 3697–3702, Berlin, March 23–27.
  • Peng, Y., Y. Tian, W. Zhang, A. Peng, and X. Hong. 2020. ”Positioning Accuracy Analysis for 5G/GNSS Fusion System.” Journal of Xiamen University (Natural Science) 59 : 101–107. doi:10.6043/j.issn.0438-0479.20191000.
  • Rappaport, T. S., S. Sun, R. Mayzus, H. Zhao, Y. Azar, K. Wang, G. N. Wong, J. K. Schulz, M. Samimi, and F. Gutierrez. 2013. “Millimeter Wave Mobile Communications for 5G Cellular: It Will Work!” IEEE Access 1: 335–349. doi:10.1109/ACCESS.2013.2260813.
  • Seco-Granados, G., J. A. Lopez-Salcedo, D. Jimenez-Banos, and G. Lopez-Risueno. 2012. “Challenges in Indoor Global Navigation Satellite Systems: Unveiling Its Core Features in Signal Processing.” IEEE Signal Processing Magazine 29 (2): 108–131. doi:10.1109/MSP.2011.943410.
  • Shahmansoori, A., G. E. Garcia, G. Destino, G. Seco-Granados, and H. Wymeersch. 2018. “Position and Orientation Estimation Through Millimeter-Wave MIMO in 5G Systems.” IEEE Transactions on Wireless Communications 17 (3): 1822–1835. doi:10.1109/TWC.2017.2785788.
  • Sun, C., H. Zhao, L. Bai, J. W. Cheong, A. G. Dempster, and W. Feng. 2020. “GNSS-5G Hybrid Positioning Based on TOA/AOA Measurements”. In China Satellite Navigation Conference (CSNC), 527–537, Chengdu, November 22–25. doi:10.1007/978-981-15-3715-8_47.
  • Su, C., G. Zhang, and J. Lu. 2021. “Research on the Influence of Pseudo-Range Biases on Precise Orbit Determination and Clock Error Calculation for Beidou Navigation Satellites”. In China Satellite Navigation Conference (CSNC 2021), 492–501, Nanchang, May 22–25. doi:10.1007/978-981-16-3138-2_46
  • Tomofumi, T., U. Takeshi, K. Nobuyoshi, and O. Noritaka. 2019. “A Regression Model-Based Method for Indoor Positioning with Compound Location Fingerprints.” Geo-Spatial Information Science 22 (2): 107–113. doi:10.1080/10095020.2019.1612599.
  • TSG RAN (Technical Specification Group Radio Access Network). 2019. “Study on NR Positioning Support, Document TS 38.855”. 3rd Generation Partnership Project (3GPP), March. https://portal.3gpp.org/desktopmodules/Specifications/SpecificationDetails.aspx?specificationId=3501
  • TSG RAN (Technical Specification Group Radio Access Network). 2020. “Physical Layer Measurements, Document TS 38.215”. 3rd Generation Partnership Project (3GPP), January [ Online]. https://portal.3gpp.org/desktopmodules/Specifications/SpecificationDetails.aspx?specificationId=3217
  • TSG RAN (Technical Specification Group Radio Access Network). 2021. “Study on NR Positioning Enhancements, Document TS 38.857”. 3rd Generation Partnership Project (3GPP), March. https://portal.3gpp.org/desktopmodules/Specifications/SpecificationDetails.aspx?specificationId=3732
  • Wanninger, L., and A. Heßelbarth. 2020. “GNSS Code and Carrier Phase Observations of a Huawei P30 Smartphone: Quality Assessment and Centimeter-Accurate Positioning.” GPS Solutions 24 (2): 64. doi:10.1007/s10291-020-00978-z.
  • Wu, Y., X. Chen, C. Wu, and J. Hu. 2008. “Review of the Ionospheric Delay Correction Methods.” GNSS World of China 02: 1–5. doi:10.13442/j.gnss.2008.02.001.
  • Xie, F., J. Liu, R. Li, and Y. Hang. 2014. “Adaptive Robust Ultra‐tightly Coupled Global Navigation Satellite System/Inertial Navigation System Based on Global Positioning System/BeiDou Vector Tracking Loops.” IET Radar, Sonar & Navigation 8 (7): 815–827. doi:10.1049/iet-rsn.2013.0294.
  • Xiong, Y., and J. Wang. 2022. “Research on Nanosecond Time Synchronization Technology of 5G Base Station Based on GNSS Neighborhood Similarity”. In The International Conference on Cyber Security Intelligence and Analytics, 871–875, Shanghai, March 18–19. doi:10.1007/978-3-030-97874-7_123
  • Zhang, S., J. Li, and S. Chen. 2021. “5G NR Positioning Technology and Its Deployment Scheme.” ZTE Technology Journal 27 (2): 49–53. doi:10.12142/ZTETJ.202102011.