1. [1] R. H. Rapp and N. K. Pavlis, "The development and analysis of geopotential coefficient models to spherical harmonic degree 360," Journal of Geophysical Research: Solid Earth, vol. 95, pp. 21885-21911, 1990. [ DOI:10.1029/JB095iB13p21885] 2. [2] C. Jekeli, "An analysis of vertical deflections derived from high-degree spherical harmonic models," Journal of Geodesy, vol. 73, pp. 10-22, 1999. [ DOI:10.1007/s001900050213] 3. [3] W. G. Heller and S. Jordan, "Error analysis of two new gradiometer-aided inertial navigation systems," J of Spacecr, vol. 13, pp. 340-347, 1976. [ DOI:10.2514/3.57095] 4. [4] K. Schwarz, Y. Li, and M. Wei, "The spectral window for airborne gravity and geoid determination," in Proceedings of the International Symposium on Kinematic Systems in Geodesy, Geomatics and Navigation, Banff, AB, Canada, 1994, pp. 445-456. 5. [5] C. Jekeli, Inertial navigation systems with geodetic applications: Walter de Gruyter, 2001. [ DOI:10.1515/9783110800234] 6. [6] J. Kwon and C. Jekeli, "A new approach for airborne vector gravimetry using GPS/INS," Journal of Geodesy, vol. 74, pp. 690-700, 2001. [ DOI:10.1007/s001900000130] 7. [7] T. W. Parks and C. S. Burrus, Digital filter design: Wiley-Interscience, 1987. 8. [8] A. V. Oppenheim, R. W. Schafer, and J. R. Buck, "Others, Discrete-time signal processing, vol. 2," ed: Prentice-hall Englewood Cliffs, 1989. 9. [9] E. Cunningham, "Digital filtering-an introduction, 1995," ed: John Wiley and Sons. 10. [10] M. Senobari, "New results in airborne vector gravimetry using strapdown INS/DGPS," Journal of Geodesy, vol. 84, pp. 277-291, 2010. [ DOI:10.1007/s00190-010-0366-6] 11. [11] M. Senobari, "Airborne vector gravimetry Using INS/GPS", Faculty of Geodesy and Geomatics Engineering, MSc Thesis, K.N.Toosi University of Technology, 2005. 12. [12] W. Heiskanen and H. Moritz, "Physical Geodesy WH Freeman and Company San Francisco", London Google Scholar, 1967.
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