EUROCAE-WG-41: ED-117, MOPS for Mode S multilateration systems for use in advanced surface movement guidance and control systems (A-SMGCS). In: The European Organisation for Civil Aviation Equipment (EUROCAE) (November 2003)
EUROCAE-WG-70: ED-142, technical specification for wide area multilateration (WAM) systems. In: The European Organisation for Civil Aviation Equipment (EUROCAE) (September 2010)
Galati, G., Genderen, P.V.: Proceedings Book of the Tyrrhenian International Workshop on Digital Communications, Enhanced Surveillance of Aircraft and Vehicles (TIWDC/ESAV’11), Capri, Italy (2011)
[+]
EUROCAE-WG-41: ED-117, MOPS for Mode S multilateration systems for use in advanced surface movement guidance and control systems (A-SMGCS). In: The European Organisation for Civil Aviation Equipment (EUROCAE) (November 2003)
EUROCAE-WG-70: ED-142, technical specification for wide area multilateration (WAM) systems. In: The European Organisation for Civil Aviation Equipment (EUROCAE) (September 2010)
Galati, G., Genderen, P.V.: Proceedings Book of the Tyrrhenian International Workshop on Digital Communications, Enhanced Surveillance of Aircraft and Vehicles (TIWDC/ESAV’11), Capri, Italy (2011)
Galati, G., Genderen, P.V.: Proceedings Book of the Tyrrhenian International Workshop on Digital Communications, Enhanced Surveillance of Aircraft and Vehicles (TIWDC/ESAV’08), Capri, Italy (2008)
Galati, G., Zellweger, A.: Proceedings Book of the ATM 2002 Advanced Workshop. Capri, Italy (2002)
Hahn, W.R., Tretter, S.A.: Optimum processing for delay-vector estimation in passive signal arrays. IEEE Trans. Inf. Theory IT–19(5), 608–614 (1973)
Torrieri, D.J.: Statistical theory of passive location systems. IEEE Trans. Aerosp. Electron. Syst. AES–20, 183–198 (1984)
Levanon, N.: Lowest GDOP in 2-D scenarios. IEE Proc. Radar Sonar Navig. 147(3), 149–155 (2000)
Galati, G., Leonardi, M., Mantilla-Gaviria, I.A., Tosti, M.: Lower bounds of accuracy for enhanced mode-s distributed sensor networks. IET Radar Sonar Navig. 6(3), 190–201 (2012). doi: 10.1049/iet-rsn.2011.0197
Smith, J.O., Abel, J.S.: Closed-form least-squares source location estimation from range-difference measurements. IEEE Trans. Acoust. Speech Signal Process. ASSP–35(12), 1661–1669 (1987)
Mantilla-Gaviria, I.A., Leonardi, M., Galati, G., Balbastre-Tejedor, J.V., Reyes, E.D.L.: Efficient location strategy for airport surveillance using Mode-S multilateration systems. Int. J. Microw. Wireless Technol. 4(2), 209–216 (2012). doi: 10.1017/S1759078712000104
Romero, L., Mason, J.: Evaluation of direct and iterative methods for overdetermined systems of TOA geolocation equations. IEEE Trans. Aerosp. Electron. Syst. 47(2), 1213–1229 (2011)
Yang, K., An, J., Bu, X., Sun, G.: Constrained total least-squares location algorithm using time-difference-of-arrival measurements. IEEE Trans. Veh. Technol. 59(3), 1558–1562 (2010)
Weng, Y., Xiao, W., Xie, L.: Total least squares method for robust source localization in sensor networks using TDOA measurements. Int. J. Distrib. Sens. Netw. 2011 (Article ID 172902) (2011). doi: 10.1155/2011/172902
Mantilla-Gaviria, I.A., Leonardi, M., Galati, G., Balbastre-T, J.V., Reyes, E.D.L.: Improvement of multilateration (MLAT) accuracy and convergence for airport surveillance. In: Tyrrhenian International Workshop on Digital Communications—Enhanced Surveillance of Aircraft and Vehicles (ESAV’11), Capri, Italy (September 12–14, 2011)
Mantilla-Gaviria, I.A., Leonardi, M., Balbastre-Tejedor, J.V., Reyes, Edl: On the application of singular value decomposition and Tikhonov regularization to ill-posed problems in hyperbolic passive location. Math. Comput. Model. 57(7–8), 1999–2008 (2013). doi: 10.1016/j.mcm.2012.03.004
El-Rabbany, A.: Introduction to GPS: The Global Positioning System, 2nd edn. Artech House, Boston, USA (2006)
Trees, HLv: Detection, Estimation and Modulation Theory, Part I. Wiley, New York (2001)
Foy, W.H.: Position-location solution by Taylor-series estimation. IEEE Trans. Aerosp. Electron. Syst. AES–12(2), 187–194 (1976)
Smith, J.O., Abel, J.S.: The spherical interpolation method of source localization. IEEE J. Ocean. Eng. OE–12(1), 246–252 (1987)
Friedlander, B.: A passive localization algorithm and its accuracy analysis. IEEE J. Ocean. Eng. OE–12(1), 234–245 (1987). doi: 10.1109/JOE.1987.1145216
Schau, H.C., Robinson, A.Z.: Passive source localization employing intersecting spherical surfaces from time-of-arrival differences. IEEE Trans. Acoust. Speech Signal Process. ASSP–35(8), 1223–1225 (1987)
Chan, Y.T., Ho, K.C.: A simple and efficient estimator for hyperbolic location. IEEE Trans. Signal Process. 42(8), 1905–1915 (1994)
Schmidt, R.O.: A new approach to geometry of range difference location. IEEE Trans. Aerosp. Electron. Syst. AES–8(6), 821–835 (1972)
Geyer, M., Daskalakis, A.: Solving passive multilateration equations using Bancroft’s algorithm. In: Digital Avionics Systems Conference, pp. F41/41–F41/48, Bellevue, WA, USA (1998)
Wikipedia: http://en.wikipedia.org/wiki/Multilateration
Bancroft, S.: An algebraic solution of the GPS equations. IEEE Trans. Aerosp. Electron. Syst. AES–21(7), 56–59 (1985)
Golub, G.H., Loan, C.F.V.: Matrix Computations, 3rd edn. The Johns Hopkins University Press, Baltimore (1996)
Bar-Shalom, Y., Li, X.R., Kirubarajan, T.: Estimation with Applications to Tracking and Navigation. Wiley, New York (2001)
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