Page 62 - 卫星导航2021年第1-2合期
P. 62

Chen et al. Satell Navig            (2021) 2:12                                        Page 7 of 7





               meeting of the satellite division of the institute of navigation (ION GNSS+   Neish, A., Walter, T., & Powell, J. D. (2017) SBAS Data authentication: a concept
               2017) (pp. 2106–2116).                            of operations.
            Draft IWG SBAS L5 DFMC Interface Control Document (SBAS L5 DFMC ICD),   Neish, A., Walter, T., & Enge, P. (2018). Parameter selection for the TESLA key-
               E-OC-7260-ESA, 1 Draft 036, March 2015.           chain. ION GNSS. Vol. 1.
            EGNOS Grant Plan 2019. (2018). GSA-EGN-PM-PL-244825 v1.0. https:// www.   Neish, A., Walter, T., & Powell, J. D. (2019). SBAS data authentication: a concept
               gsa. europa. eu/ sites/ defau lt/ fles/ conte nt/ egnos_ 2019_ grant_ plan. pdf  of operations. In Proceedings of the 32nd international technical meeting
            Enge, P., Walter, T. (2014). Digital message authentication for SBAS (and APNT).   of the satellite division of the institute of navigation (ION GNSS+ 2019) (pp.
               In ION GNSS+ 2014, Tampa, FL.                     1812–1823).
            Fernández-Hernández, I., Châtre, E., Chiara, A. D., Broi, G. D., Pozzobon, O.,   Perrig, A., Canetti, R., Tygar, J. D., & Song, D. (2000). Efcient authentication and
               Fidalgo, J., & Rijmen, V. (2018). Impact analysis of SBAS authentication   signing of multicast streams over lossy channels. In Proceeding 2000 IEEE
               NAVIGATION. Journal of the Institute of Navigation, 65(4), 517–532.  symposium on security and privacy. S&P 2000 (pp. 56–73). IEEE.
            Fernández-Hernández, I., Rijmen, V., Seco-Granados, G., Simón, J., Rodríguez, I.,   Pozzobon, O., Wullems, C., Kubik, K., et al. (2004). Secure tracking using trusted
               & Calle, J. D. (2014). Design drivers, solutions and robustness assessment   gnss receivers and galileo authentication services. Positioning, 3(08), 200.
               of navigation message authentication for the galileo open service. In Pro-  Psiaki, M. L., & Humphreys, T. E. (2016). GNSS Spoofng and Detection. Proceed-
               ceedings of the 27th international technical meeting of the satellite division of   ings of the IEEE, 104(6), 1258–1270.
               the institute of navigation (ION GNSS+ 2014) (pp. 2810-2827)..  Scott, L. (2003). Anti-spoofng and authenticated signal architectures for
            Fernández Hernández, I. (2014a). GNSS authentication: design parameters and   civil navigation systems. In: Proceedings of the ION GNSS meeting (pp.
               service concepts. In: Proceedings of the European navigation conference.  1542–1552).
            Fernández Hernández, I. (2014b). GNSS authentication: design parameters and   Standardization Administration (2016a) GB/T 32918.1——2016, SM2 Public
               service concepts. In: Proceedings of the European navigation conference.  key cryptographic algorithm SM2 based on elliptic curves, Part 1: General.
            ICAO, Annex 10-Volume 1 Aeronautical Telecommunications - Radio Naviga-  Standardization Administration (2016b) GB/T 32918.1——2016, SM2 Public
               tion Aids.                                        key cryptographic algorithm SM2 based on elliptic curves, Part 2: Digital
            Kerns, A. J., Wesson, K. D., & Humphreys, T. E. (2014). A blueprint for civil GPS   signature algorithm.
               navigation message authentication. In 2014 IEEE/ION position, location   Tan, S. (2008). Development and thought of compass navigation satellite
               and navigation symposium-PLANS 2014 (pp. 262–269). IEEE.  system. Journal of Astronautics., 29, 391–396.
            Liu R. (2015). Information Authentication Based Beidou II Civil Signal Anti-  Walter, T., Neish, A., Clark, B (2019) Recommended removal of the authentica-
               spoofng Method. Civil Aviation University of China, 2015.  tion time to detect key performance indicator for SBAS Authentication of
            Liu T. (2018). Design of Navigation Message Authentication Scheme and   the 15th joint working groups meeting of the navigation systems panel,
               Analysis of Performance. In Proceeding of the 29th Conference of Spacecraft   Montreal, October 15–24. JWGs/5-WP/67.
               TT&C Technology in China, Shanghai, 2018.      Wesson, K., Rothlisberger, M., & Humphreys, T. (2012). Practical cryptographic
            Lo, S., DeLorenzo, D., Enge, P., Akos, D., & Bradley, P. (2009). Signal authentica-  civil GPS signal authentication NAVIGATION. Journal of the Institute of
               tion. Inside GNSS, 4(5), 30–39.                   Navigation, 59(3), 177–193.
            Minimum Operational Performances standards for global positioning system/  Wullems, C., Pozzobon, O., & Kubik, K. (2005). Signal authentication and integ-
               wide area augmentation system airborne equipment (SBAS L1 MOPS),   rity schemes for next generation global navigation satellite systems. In
               RTCA DO-229D, 2006.                               European navigation conference (ENC-GNSS 2005).
            Mu, S., Chen, Y., Liu, T., Liu, C., & Chen, X. (2020). Design of message authentica-  Yuki, H. (2016). ANGO GIJUTSU NYUMON. The Third Edition. Post&Telecom
               tion and OTAR broadcast strategy for BDSBAS. Journal of Beijing University   Press, Vol. 12.
               of Aeronautics and Astronautics. https:// doi. org/ 10. 13700/j. bh. 1001- 5965.
               2020. 0222.                                    Publisher’s Note
            Neish, A., Walter, T., & David Powell, J. (2019). Design and analysis of a public
               key infrastructure for SBAS data authentication. Navigation, 66(4),   Springer Nature remains neutral with regard to jurisdictional claims in pub-
               831–844.                                       lished maps and institutional afliations.
            Neish, A., Walter, T., & Enge, P. (2019). Quantum-resistant authentication
               algorithms for satellite-based augmentation systems. Navigation, 66(1),
               199–209.
   57   58   59   60   61   62   63   64   65   66   67