박사

실시간 이동측위를 위한 GPS/GLONASS 통합 PPP-RTK 알고리즘 개발

원지혜 2015년
논문상세정보
    • 저자 원지혜
    • 기타서명 Development of PPP-RTK Algorithms for Moving Platforms Using Combined GPS/GLONASS Measurements
    • 형태사항 xii, 117 p.: 26cm
    • 일반주기 인하대학교 논문은 저작권에 의해 보호받습니다, 지도교수:박관동, 참고문헌 : p.106-115
    • 학위논문사항 인하대학교 대학원 일반대학원, 학위논문(박사)-, 2015. 2, 지리정보공학과
    • DDC 623.893, 21
    • 발행지 인천
    • 언어 kor
    • 출판년 2015
    • 발행사항 인하대학교 대학원 일반대학원
    • 주제어 GLONASS GPS PPP PPP-RTK
' 실시간 이동측위를 위한 GPS/GLONASS 통합 PPP-RTK 알고리즘 개발' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • glonass
  • gps
  • ppp
  • ppp-rtk
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
512 0

0.0%

' 실시간 이동측위를 위한 GPS/GLONASS 통합 PPP-RTK 알고리즘 개발' 의 참고문헌

  • 위성측위 가용성 및 정확도 향상 평가를 위한 통합 GNSS 시뮬 레이터 개발, 석사학위논문
    김혜인 인하대학교 [2009]
  • 산업통상자원부
    자동발렛파킹을 위한 센서기반 공간인지 및 자동주행 기술개발 [2014]
  • 대한지적공사
    지적측량분야 GPS 효율성 향상을 위한 PPP-RTK 기술연구 [2013]
  • Xu, G. (2007), GPS: Theory, Algorithms and Applications, 2nd Edition, Springer, Heidelberg, Germany
  • Wu, J. T., Wu, S. C., Hajj, G. A., Bertiger, W. I. and Lichten, S. M. (1993), Effects of antenna orientation on GPS carrier phase, Manuscripta Geodaetica, Vol. 18, No. 2, pp. 91-98
  • Won, J., Park, K.-D., Ha, J. and Cho, J. (2010), Effects of Tropospheric Mapping Functions on GPS Data Processing, Journal of Astronomy and Space Sciences, Vol. 27, No. 1, pp. 21-30
  • Webb, F. H. and Zumberge, J. F. (1993), An introduction to the GIPSY/OASIS-II, JPL Publication D-11088, Pasadena, California, USA
  • Watson, C., Tregoning, P. and Coleman, R. (2006), Impact of Solid Earth Tide Models on GPS Coordinate and Tropospheric, Geophysical Research Letters, Vol. 33, L08306, doi:10.1029/2005GL025538
  • Wang, C. (2012), NavCom Global StarFireTM Service, Presented at the PPP-RTK & Open Standards Symposium, Frankfurt, Germany
  • W bbena, G. (2012), RTCM State Space Representation (SSR) Overall Concepts Towards PPP-RTK, Presented at the PPP-RTK & Open Standards Symposium, Frankfurt, Germany
  • W bbena, G. (2008), GNSS Network-RTK Today and in the Future Concepts and RTCM Standards, Presented at the International Symposium on GNSS, Space-based and Ground-based Augmentation Systems and Applications, Berlin, Germany
  • W bbena G., Schmitz, M. and Bagge A. (2005), PPP-RTK: Precise Point Positioning Using State-Space Representation in RTK Networks, Proceedings of the 18th International Technical Meeting of the Satellite Division of The Institute of Navigation, ION GNSS 2005, Long Beach, California, pp. 2584-2594
  • W bbena G., Bagge, A. and Schmitz, M. (2001), Network-Based Techniques for RTK Applications, Proceedings of GPS JIN 2001, Tokyo, Japan
  • Vollath, U., Buecherl, A., Landau, H., Pagels, C. and Wagner, B. (2000), Multi-Base RTK Positioining Using Virtual Reference Stations, Proceedings of the 13th International Technical Meeting of the Satellite Division of the
  • Trimble 홈페이지: http://www
    trimble.com/positioning-services/centerpo int-RTX-standard.aspx
  • Toor, P. (2012), Providing GNSS Augmentation DATA: A commercial Service Provider's Perspective, Presented at the PPP-RTK & Open Standards Symposium, Frankfurt, Germany
  • Takas, T. (2010), RTKLIB ver 2.4.0 manual, http://www.rtklib.com/prog/ manual_2.4.0.pdf
  • Steigenberger, P., Boehm, J. and Tesmer, V. (2008), Comparison of GMF/GPT with VMF1/ECMWF and Implications for Atmospheric Loading, Presented at the IGS Analysis Center Workshop, Miami Beach, Florida, USA
  • Seastar 홈페이지: http://www
    seastar.co.uk
  • Schmitz, M. (2012), RTCM State Space Representation Messages: Status and Plans, Presented at the PPP-RTK & Open Standards Symposium, Frankfurt, Germany
  • Sato, Y., Saito, M., Miya, M., Shima, M., Omura, Y., Takiguchi, J. (2012), Centimeter-class Positioining Augmentation Utilizing Quasi-Zenith Satellite System, Presented at the PPP-RTK & Open Standards Symposium, Frankfurt, Germany
  • Rocken, C., Hove, T. V., Johnson, J., Solheim, F. and Ware, R. (1995), GPS/STORM—GPS Sensing of Atmospheric Water Vapor for Meteorology, Journal of Atmospheric and Oceanic Technology, Vol. 12, pp.468-478
  • Ro bach, U. (2000), Positioning and Navigation Using the Russian Satellite System GLONASS. Ph.D. Thesis, University of the Federal Armed Forces Munich, Germany
  • Remondi, B. W. (1991), NGS Second Generation ASCII and Binary Orbit Formats and Associated Studies, Proceedings of the Twentieth General Assembly, International Union of Geodesy and Geophysics, Vienna, Austria
  • Rebischung, P. (2011), Upcoming switch to IGS08/igs08.atx, [IGSMAIL -6354], http://igscb.jpl.nasa.gov/pipermail/igsmail/2011/006346. html
  • RTCM paper 059-2011-SC104-635 (2011), Committee Draft for Vote Amendment 5-A to RTCM STANDARD 10403.1 DIFFERENTIAL GNSS SERVICES-VERTION 3
  • Petit, G. and Luzum, B. (eds.) (2011), IERS Conventions (2010), IERS Technical Note 36, Frankfurt am Main: Verlag des Bundesamts f r Kartographie und Geod sie, http://tai.bipm.org/iers/conv2010
  • Ovstedal, O., Kjorsvik, N. S. and Gjevestad, J. G. O. (2006), Surveying using GPS Precise Point Positioning, XXIII FIG Congress, Munich, Germany
  • Neta, B., Sagovac, C. P., Danielson, D. A. and Clynch, J. R. (1996), Fast Interpolation for Global Positioning System (GPS) Satellite orbits, Proceeding of the AIAA/AAS Astrodynamics Specialist Conference, San Diego, California, USA
  • Misra, P. and Enge, P. (2001), Global Positioning System: Signals, Measurements and Performance, Ganga-Jumuna Press, Lincoln, Massachusetts, USA
  • Mervart, L., Lukes, Z., Rocken, C. and Iwabuchi, T. (2008), Precise point positioning with ambiguity resolution in real-time, Proceedings of ION GNSS 2008, Savanah, GA, USA, pp. 397-405
  • Menge, F., Seeber, G., Volksen, C., Wuebbena, G. and Schmitz, M. (1998), Results of absolute field calibration of GPS antenna PCV, Proceedings of the 11th International Technical Meeting of the Satellite Division of the Institute of Navigation ION GPS-98, The Institute of Navigation, pp. 31-38
  • Melgard, T., Vigen, E., Orpen, O. and Ulstein, J. H. (2010), Pulling in all signals. PPP with GPS and GLONASS: The new G2, GPS world, Vol. 21, No. 3, pp. 28-35
  • Melchior, P. (1978), The tides of the planet earth, Oxford: Pergamon Press, New York, USA
  • McCarthy, D. D. (ed.) (1996), IERS Conventions (1996), IERS Technical Note 21, Observatoire de Paris, Paris, France
  • Martin, A., Anquela, A. B., Berne, J. L. and Sanmartin, M. (2012), Kinematic GNSS-PPP results from various software packages and raw data configurations, Scientific Research and Essays, Vol. 7, No. 3, pp. 419-431
  • Mader, G. L. and Czopek, F. M. (2000), The Block IIA Satellites - Calibrating Antenna Phase Center, GPS World, Vol. 13, pp. 40-46
  • Li, P. and Zhang, X. (2014), Integrating GPS and GLONASS to accelerate convergence and initialization times of precise point positioning, GPS Solutions, Vol. 18, pp. 461-471
  • Leandro, R., Landau, H., Nitschke, M., Glocker, M., Seeger, S., Chen, X., Deking, A., BenTahar, M., Zhang, F., Ferguson, K., Stolz, R., Talbot, N., Lu, G., Allison, T., Brandl, M., Gomez, V., Cao, W. and Kipka, A. (2011), RTX Positioning: The Next Generation of cm-accurate Real-time GNSS Positioning, Proceedings of the 24th International Technical Meeting of The Satellite Division of the Institute of Navigation, ION GNSS 2011, Portland, Oregon, pp. 1460-1475
  • Leandro, R. F. and Santos, C. (2006), Wide Area Based Precise Point Positioning, Proceedings of ION GNSS 19th International Technical Meeting of the Satellite Division, Fort Worth, Texas, pp. 2272-2278
  • Leandro, R. F. (2009), Precise Point Positioning with GPS: A New Approach for Positioning, Atmospheric studies, and Signal Analysis, Ph.D. Thesis, Department of Geodesy and Geomatics Engineering, Technical Report No. 267, University of New Brunswick, Fredericton, New Brunswick, Canada
  • Laurichesse, D., Mercier, F., Berthias, J.-P., Broca, P. and Cerri, L., (2009), Integer Ambiguity Resolution on Undifferenced GPS Phase Measurements and its Application to PPP and Satellite Precise Orbit Determination, Navigation, Journal of the institute of Navigation, Vol. 56, No. 2, pp. 135-149
  • Komjathy, A. (1997), Global Ionospheric Total Electron Content Mapping Using the Global Positioning System, Ph.D. dissertation, Department of Geodesy and Geomatics Engineering Technical Report NO. 188, University of New Brunswick, Fredericton, New Brunswick, Canada
  • Klobuchar, J. A. (1996), Ionospheric Effects of GPS, in Global Positioning System: Theory and Applications, Volume I. American Institute of Aeronanutics and Astronanutics, Washington, DC, USA
  • Kjorsvik, N.S. (2006). TerraPos – Users manual. Terratec AS, Norway
  • Kjorsvik, N. S., Ovstedal, O., Gjevestad, J. G. O. (2009), Kinematic Precise Point Positioning during Marginal Satellite Availability, Observing our Changing Earth, International Association of Geodesy Symposia, Vol. 133, pp. 691-699
  • Kaula, W. M. (2000), Theory of Satellite Geodesy: Applications of Satellites to Geodesy, Courier Dover Publications, Mineola, New York, USA
  • Institute of Navigation, ION GPS 2000, Salt Lake City, UT. pp. 123-131 Wanninger, L. (2003), GPS on the Web: Virtual reference stations (VRS), GPS Solutions, Vol. 7, pp.143-144
  • IS-GPS-200D (2004), Interface Specification IS-GPS-200, Revision D, Navstar GPS Space Segment/Navigation User Interfaces, Navstar GPS Joint Program Office
  • IGS-RTS 홈페이지: http://rts
    igs.org
  • IGS 홈페이지: http://igscb
    jpl.nasa.gov/index.html
  • Holdridge, D. B. (1967), An alternative expression of light time using general relativity, JPL Space Program summary 37-48, III, pp. 2-4
  • Hofmann-Wellenhof, B., Lichtenegger, H. and Wasle, E. (2008), GNSS Global Navigation Satellite Systems: GPS, GLONASS, Galileo and more, Springer, Berlin
  • Hofmann-Wellenhof, B., Lichtenegger, H. and Collins, J. (2001), GPS Theory and Practice Fifth Revised Edition, Springer-Verlag Wien New York
  • Hatanaka, Y., Sawada, M., Horita, A., and Kusaka, M. (2001), Calibration of antenna-radome and monument-multipath effect of GEONET–Part Ⅰ: Measurement of phase characteristics, Earth Planets and Space, Springer Berlin Heidelberg, Vol. 53, No. 1, pp. 13-21
  • Hadas, T. and Bosy, J. (2014), IGS RTS Precise Orbits and Clocks Verification and Quality Degradation over Time, GPS Solut, doi:10.1007/s10291-014-0369-5
  • Habrich, H. (1999), Geodetic Applications of the Global Navigation Satellite System (GLONASS) and GLONASS/GPS Combinations, Ph.D. Thesis, University of Berne, Switzerland
  • H roux, P., Gao, Y., Kouba, J., Lahaye, F., Mireault, Y., Collins, P., Macleod, K., T treault, P. and Chen, K. (2004), Products and Applications for Precise Point Positioning - Moving Towards Real-Time, Proceedings of the 17th International Technical Meeting of the Satellite Division of The Institute of Navigation, Long Beach, California, pp. 1832-1843
  • Guo, F., Zhang, X., Li, X. and Cai, S. (2010), Impact of Sampling Rate of IGS Clock on Precise Point Positioning, Geo-spatial information Sciense, Vol. 13, No. 2, pp. 150-156
  • Gelb, A. (1974), Applied Optimal Estimation. The MIT press, Cambridge, Massachusetts, USA
  • Ge, M., Gendt, G., Rothacher, M., Shi, C. and Liu, J. (2008), Resolution of GPS Carrier-phase Ambiguities in Precise Point Positioning (PPP) with Daily Observations, Journal of Geodesy, Vol. 82, pp. 389-399
  • Ge, M., Dousa, J., Li, X., Ramatschi, M., Nischan, T. and Wichert, J. (2012), A Novel Real-time Precise Point Positioning Service System: Global Precise Point Positioning with Regional Augmentation, Journal of Global Positioning Systems, Vol. 11, No. 1, pp.2-10
  • Gao, Y. (2004), P3 user manual (version 1.0) [EB/OL], http://people.ucalgary.ca/~ygao/images/P3%20manual.pdf
  • GPS 코드의사거리 관측치 기반 정밀절대측위 정확도 향상에 관 한 연구, 석사학위논문
    김지혜 인하대학교 [2013]
  • GPS 정확도 향상을 위한 정밀 궤도력 활용 방안 연구, 석사학위 논문
    길영옥 경기대학교 [2007]
  • Ferland, R. (2006), Proposed IGS05 Realization, [IGSMAIL-5447], http://igscb.jpl.nasa.gov/mail/igsmail/2006/msg00170.html
  • Euler, H.-J., Keenan, C. R., Zebhauser, B. E. and W bbena, G. (2001), Study of a Simplified Approach in Utilizing Information from Permanent Reference Station Arrays, Proceedings of the National Technical Meeting of the Satellite Division of Institute of Navigation, ION GPS 2001, Salt Lake, USA, pp. 379-391
  • Elgered, G., Davis J. L., Herring T. A. and Shapiro, I. I. (1991), Geodesy by Radio Interferometry: Water Vapor Radiometry for Estimation of the Wet Delay, Journal of Geophysical Research, Vol. 96, No. B4, pp. 6541-6555
  • Drescher, R., Chen, X., Landau, H., Kipka, A., Glocker, M. and Gomez, V. (2013), Accelerating the Convergence of Trimble CenterPoint RTX Positioning by using a Global Ionospheric Model, GNSS PPP Workshop: Reaching Full Potential, Ottawa, Canada
  • Collins, P. (2008), Isolating and Estimating Undifferenced GPS Integer Ambiguities, Proceedings of the 2008 National Technical Meeting of the Institute of Navigation, San Diego, California, US. pp. 720-732
  • Chen, J., Xiao, P., Zhang, Y. and Wu, B. (2013), GPS/GLONASS System Bias Estimation and Application in GPS/GLONASS Combined Positioning, China Satellite Navigation Conference (CSNC) 2013 Proceedings, Vol. 243, pp. 323-333
  • Cai, C., Luo, X. and Zhu, J. (2014), Modified Algorithm of Combined GPS/GLONASS Precise Point Positioning for Applications in Open-pit Mines, Transactions of Nonferrous Metals Society of China, Vol. 24, pp. 1547-1553
  • Cai, C. (2009), Precise Point Positioning Using Dual-Frequency GPS and GLONASS Measurements, M.S. Thesis, University of Calgary, Calgary, Canada
  • Boehm, J., Niell, A., Tregoning, P. and Schuh, H. (2006), Global Mapping Function (GMF): A New Empirical Mapping Function based on Numerical Weather Model Data, Geophysical Research Letters, Vol. 33, L07304
  • Boehm, J., Heinkelmann, R. and Schuh, H. (2007), Short Note: A Global Model of Pressure and Temperature for Geodetic Applications, Journal of Geodesy, Vol. 81, pp. 679-683
  • Barnes, J., Rizos, C., Wang, J., Meng, X., Cosser, E., Dodson, A. H. and Roberts, G. W. (2003), The Monitoring of Bridge Movements using GPS and Pseudolites, In: Proceedings of 11th FIG Symposium on Deformation Measurements, Santorini, Greece