A priori solar radiation pressure model for QZSS Michibiki satellite

Size: px
Start display at page:

Download "A priori solar radiation pressure model for QZSS Michibiki satellite"

Transcription

1 IGS Workshop, 8-12 Feb, 2016, Sydney, Australia A priori solar radiation pressure model for QZSS Michibiki satellite Qile Zhao, Guo Chen, Jing Guo, Jingnan Liu ( zhaoql@whu.edu.cn) GNSS Research Center, Wuhan University

2 Quasi-Zenith Satellite System (QZSS) Japanese regional augmentation system for GPS in the Asia-Pacific region Launch of QZS-1 in September 2010, PRN J01, Michibiki Inclined Geosynchronous Orbit (IGSO) Attitude control mode: Yaw-steering (YS) and Orbit-Normal (ON) mode

3 QZSS orbit: SLR residuals QZF SLR residuals show clear β-angle dependent systematic errors when satellite is in YS mode TUM SLR residuals show different pattern related to SRP model used when satellite is in ON mode Steigenberger P, Kogue S (2014) IGS-MGEX: QZSS orbit and clock determination

4 QZSS orbit: comparison (QZF vs TUM) "bow-tie" pattern in radial during ON model linear correlation with β-angle in cross-track better consistency since 2014 The deficiency of SRP model for POD in ON mode! Steigenberger P, Kogue S (2014) IGS-MGEX: QZSS orbit and clock determination

5 CODE SRP models a = a0 + D( u) e + Y( u) e + B( u) e emp D Y B n D i= 1 n i= 1 n i= 1 D D { ic, i is, i } Du ( ) = D + D cosc u+ D sin S u Y Y Y { ic, i is, i } Yu ( ) = Y+ Y coscu+ Y sin Su B B B { ic, i is, i } Bu ( ) = B + B coscu+ B sin S u Reference n D n Y n B Periodic terms (Beutler et al 1994) (Springer et al 1999) C D, S D = i; C Y, S Y = i; C B, S B = i i i i i i i (Arnold et al 2015) 2i 0 2i-1 D D B B C, S = 2 i; C, S = 2i 1 i i i i

6 Adjustable box-wing model Modelded the satellite as "a box and two wings" (Rodríguez-Solano et al 2012) The similar POD accuracy has been achieved as CODE by adjustment of the optical coefficients of satellite bus and solar panels, and other parameters

7 Comparison of different SRP models Solutions SRP model Parameters to be estimated C5 C5a D4B1 ABW CODE model without a priori model (Beulter et al 1994) CODE model without a priori model but with an empirical constant acceleration bias in along-track (Guo et al 2015) Extended CODE model ( Arnold et al 2015) Adjustable Box-wing model (Rodríguez-Solano et al 2012) D0, Y0, B0, Bc1, Bs1 D0, Y0, B0, Bc1, Bs1, A0 D0, Y0, B0, Dc2, Ds2, Dc4, Ds4, Bc1, Bs1 SP, SB, Y0, +XAD, +ZAD, -ZAD, +XR, +ZR, -ZR

8 Overlapping orbit β-angle dependent systematic errors in along-track and cross-track direction for C5 solution in YS mode Clear β -angle dependent systematic errors in along-track and radial direction for all solutions in ON mode Different behaviors are shown in cross-track when the Sun cross the orbit plane

9 SLR residuals C5 C5a No clear β-angle dependent systematic error in ABW solution, but this error is exist for others. However, lower performance for ABW solution in ON mode D4B1 ABW

10 QZSS Michibiki vs Galileo Cuboid, stretch in Z axis L-band antenna Cuboid, stretch in X axis Cuboid box model? Montenbruck et al (2015)

11 Enhanced SRP model for Galileo Montenbruck et al (2015) Deduced for box-wing shape in yaw-steering regime Without considering the acceleration in solar panels a a a αδ 2 ρ 2 3 aa ( cosε + cosε cos ε) 2 ac( cosε cos ε + sin ε) 3 ρ 2 a ( cosε cos ε sin ε) 2a cos ε αδ αδ 2 D = C ( cosε + sin ε + ) S ( cosε sin ε sin ε + ) 4 αδ 2 αδ ab = as (cosεsin ε) aa ( cosε sin ε) 3 3 ρ ρ 2 a (( cosε sin ε) cosεsin ε) 2 a (( cosε + sin ε) cosεsin ε) C S ρ 2 2aA cos εsin 2 3 ρ 3 A ε S

12 A prior SRP model for QZSS Michibiki The acceleration reconstruction in D and B axis Fitting Coefficie the coefficients in D above (nm/s 2 ) equations with B reconstructed (nm/s 2 ) acceleration nts YS ON YS ON a αδ C a αδ S a αδ A a ρ C a ρ S a ρ A The accelerations in solar panels cause the different values for that same coefficients in D and B.

13 Improvement of the prior model in ON mode C5 without priori model C5 with priori model Periodic variations for Bc, Bs, and B0; Linear variations for Y0

14 Improvement of the prior model in ON mode a = a + a ON fit D D D0 a = a + a + a cos( u) + a sin( u) a ON fit fit fit B B B0 Bc1 Bs1 ON Y = a fit Y0 2 a = c + d β + e β fit * * * * Coefficients fit ad 0 fit ab 0 fit abc 1 fit abs 1 fit ay 0 c * d * e * Fitting the parameters during ON season with a two-order polynomial against beta angle

15 The variations of CODE SRP parameters C5 with priori model C5 with improved priori model

16 Validation: overlapping orbit 4.04cm 11.02cm 16.71cm

17 Validation: SLR residuals SLR biases when the Sun is cross the orbit plane from the below to the above Solutio n C5 Year YS ON Mean STD RMS Mean STD RMS Enhanc ed SRP for QZSS C5 without 2015 priori model C5 with 1.88 enhanced priori model 14.23

18 Conclusion For QZSS Michibiki, there is β-angle dependent systematic error, and the CODE and its extend SRP models are hard to eliminate the error Furthermore, CODE SRP and its modified version has deficiency for modelling the SRP acting on satellite in ON mode With reconstructed acceleration, a priori SRP model has been established for QZSS Michibiki satellite The model is consists two parts for YS and ON mode, respectively With this model, the systematic errors in SLR residuals has been removed, and orbit accuracy has been improved significantly when satellite in ON mode However, there is still relative larger SLR biases when the Sun is cross the orbit plane from the below to the above. It needs further investigation.

19 Thanks for your attention! Any question or advice will be appreciated!

IGS-MGEX: QZSS Orbit and Clock Determination

IGS-MGEX: QZSS Orbit and Clock Determination IGS-MGEX: QZSS Orbit and Clock Determination P. Steigenberger (1), S. Kogure (2) (1) DLR/GSOC, (2) JAXA Quasi-Zenith Satellite System (QZSS) Japanese regional augmentation System for GPS in the Asia and

More information

Impact of the SRP model on CODE's 5- system orbit and clock solution for the MGEX

Impact of the SRP model on CODE's 5- system orbit and clock solution for the MGEX Impact of the SRP model on CODE's 5- system orbit and clock solution for the MGEX L. Prange, E. Orliac, R. Dach, D. Arnold, G. Beutler, S. Schaer, A. Jäggi Astronomical Institute, University of Bern, Switzerland

More information

CODE's multi-gnss orbit and clock solution

CODE's multi-gnss orbit and clock solution source: https://doi.org/10.7892/boris.68193 downloaded: 13.3.2017 CODE's multi-gnss orbit and clock solution L. Prange, E. Orliac, R. Dach, D. Arnold, G. Beutler, S. Schaer, A. Jäggi Astronomical Institute,

More information

Latest improvements in CODE's IGS MGEX solution

Latest improvements in CODE's IGS MGEX solution Latest improvements in CODE's IGS MGEX solution L. Prange, R. Dach, G. Beutler, D. Sidorov, A. Villiger, S. Schaer, A. Jäggi Astronomical Institute, University of Bern, Switzerland Federal office of topography

More information

Impact of solar radiation pressure modeling on GNSS-derived geocenter motion

Impact of solar radiation pressure modeling on GNSS-derived geocenter motion EGU 2012, Vienna, Austria Impact of solar radiation pressure modeling on GNSS-derived geocenter motion Carlos Rodriguez-Solano (1) Urs Hugentobler (1) Peter Steigenberger (1) Mathias Fritsche (2) (1) Astronomical,

More information

Multi-GNSS Working Group Technical Report 2016

Multi-GNSS Working Group Technical Report 2016 Multi-GNSS Working Group Technical Report 2016 P. Steigenberger 1, O. Montenbruck 1 1 Deutsches Zentrum für Luft- und Raumfahrt (DLR) German Space Operations Center (GSOC) Münchener Straße 20 82234 Wessling,

More information

Evaluation on the Multi-GNSS Precise Orbit and Clock Products

Evaluation on the Multi-GNSS Precise Orbit and Clock Products Evaluation on the Multi-GNSS Precise Orbit and Clock Products Fei Guo 1, 2, Xingxing Li 3, Xiaohong Zhang 1, Jinling Wang 2 1 School of Geodesy and Geomatics, Wuhan University, China 2 School of Civil

More information

QZSS 1 Precise Orbit Determination

QZSS 1 Precise Orbit Determination International Symposium on GNSS 2015 Kyoto 17B1 12 QZSS 1 Precise Orbit Determination by MADOCA Tomoji TAKASU LHTC/Tokyo University of Marine Science and Technology Motoyuki MIYOSHI, Kaori KAWATE, Satoshi

More information

IGS-related multi-gnss activities at CODE

IGS-related multi-gnss activities at CODE IGS-related multi-gnss activities at CODE Lars Prange (1), Rolf Dach (1) Simon Lutz (1), Stefan Schaer (2), Adrian Jäggi (1) (1) Astronomical Institute, University of Bern, Switzerland source: http://boris.unibe.ch/57698/

More information

Trimble RTX TM Orbit Determination and User Positioning Performance with BeiDou Satellites

Trimble RTX TM Orbit Determination and User Positioning Performance with BeiDou Satellites Nick Talbot, Xiaoming Chen, Nico Reussner, Markus Brandl, Markus Nitschke, Carlos Rodriguez-Solano, Feipeng Zhang Trimble Terrasat GmbH IGNSS 2016, SYDNEY, AUSTRALIA Trimble RTX TM Orbit Determination

More information

Earth Radiation Pressure Modeling for BDS IGSO satellite

Earth Radiation Pressure Modeling for BDS IGSO satellite Earth Radiation Pressure Modeling for BDS IGSO satellite Zhen LI 1, Marek ZIEBART, Stuart GREY and Santosh BHATTARAI Abstract. This study shows ERP (Earth Radiation Pressure) is significant for precise

More information

A new Solar Radiation Pressure Model for the GPS Satellites

A new Solar Radiation Pressure Model for the GPS Satellites A new Solar Radiation Pressure Model for the GPS Satellites T.A. Springer, G. Beutler, M. Rothacher Astronomical Institute, University of Bern Sidlerstrasse 5, CH-3012 Bern, Switzerland Abstract The largest

More information

A new Solar Radiation Pressure Model for the GPS Satellites

A new Solar Radiation Pressure Model for the GPS Satellites A new Solar Radiation Pressure Model for the GPS Satellites T.A. Springer, G. Beutler, M. Rothacher Astronomical Institute, University of Bern Sidlerstrasse 5, CH-32 Bern, Switzerland Abstract The largest

More information

Possible advantages of equipping GNSS satellites with on-board accelerometers

Possible advantages of equipping GNSS satellites with on-board accelerometers Possible advantages of equipping GNSS satellites with on-board accelerometers - a way to get profits - Maciej Kalarus (1) Krzysztof Sośnica (2) Agata Wielgosz (1) Tomasz Liwosz (3) Janusz B. Zielioski

More information

ESA/ESOC Status. T. Springer, E. Schoenmann, W. Enderle. ESA/ESOC Navigation Support Office. ESA UNCLASSIFIED - For Official Use

ESA/ESOC Status. T. Springer, E. Schoenmann, W. Enderle. ESA/ESOC Navigation Support Office. ESA UNCLASSIFIED - For Official Use ESA/ESOC Status T. Springer, E. Schoenmann, W. Enderle ESA/ESOC Navigation Support Office ESA UNCLASSIFIED - For Official Use Content Issues in BIAS PP Status regarding future ILRS plans Other ILRS/SLR

More information

Hourly Updated Precise Orbit Products of Quad-constellation

Hourly Updated Precise Orbit Products of Quad-constellation Hourly Updated Precise Orbit Products of Quad-constellation Satellites in IGS Analysis Center at Wuhan University Qile Zhao; Hongyang Ma; Xiaolong Xu; Jing Guo; Min Li Wuhan University Jul.05 2017 Paris

More information

CODE s new solar radiation pressure model for GNSS orbit determination

CODE s new solar radiation pressure model for GNSS orbit determination Noname manuscript No. (will be inserted by the editor) CODE s new solar radiation pressure model for GNSS orbit determination D. Arnold M. Meindl G. Beutler R. Dach S. Schaer S. Lutz L. Prange K. Sośnica

More information

Impact of GPS box-wing models on LEO orbit determination

Impact of GPS box-wing models on LEO orbit determination Impact of GPS box-wing models on LEO orbit determination Heike Peter (1), Tim Springer (1),(2), Michiel Otten (1),(2) (1) PosiTim UG Sentinel-1 GPS-IIF (2) ESA/ESOC Sentinel-2 Credits:ESA gps.gov IGS Workshop

More information

Sebastian Strasser, Torsten Mayer-Gürr

Sebastian Strasser, Torsten Mayer-Gürr Sebastian Strasser, Torsten Mayer-Gürr Institute of Geodesy, Graz University of Technology WG Theoretical Geodesy and Satellite Geodesy Geodetic Week 2015, Stuttgart, Germany Sebastian Strasser 16.09.2015

More information

Improved GNSS-Based Precise Orbit Determination by using highly accurate clocks

Improved GNSS-Based Precise Orbit Determination by using highly accurate clocks Improved GNSS-Based Precise Orbit Determination by using highly accurate clocks A. Susnik 1, R. Dach 1, K. Wang 2, M. Meindl 2, M. Rothacher 2, D. Koch 2, T. Romanyuk 3, I. Selmke 3, U. Hugentobler 3,

More information

Extended prediction of QZSS orbit and clock

Extended prediction of QZSS orbit and clock Tampere University of Technology Extended prediction of QZSS orbit and clock Citation Leppäkoski, H., Rautalin, S., Zhang, X., Ali-Löytty, S., & Piché, R. (16). Extended prediction of QZSS orbit and clock.

More information

Towards an improved ILRS TRF contribution

Towards an improved ILRS TRF contribution Towards an improved ILRS TRF contribution Erricos C. Pavlis ILRS Analysis Coordinator JCET/ & NASA Goddard IERS Workshop on Conventions 2007 20-21 Sept. 2007, Sèvres, France Overview The ILRS Network Geometry

More information

Current Status of Non-conservative Force Modelling:

Current Status of Non-conservative Force Modelling: Current Status of Non-conservative Force Modelling: Interface to REPRO2 Marek Ziebart, Stuart Grey and Shawn Allgeier Chair, IGS working group on Space Vehicle Orbit Dynamics Space Geodesy and Navigation

More information

Improvement of the CNES/CLS IDS Analysis Center solution for the contribution to the next ITRF

Improvement of the CNES/CLS IDS Analysis Center solution for the contribution to the next ITRF IDS Workshop Ponta Delgada, September 2018 Improvement of the CNES/CLS IDS Analysis Center solution for the contribution to the next ITRF Hugues Capdeville, Jean-Michel Lemoine CNES/CLS AC (GRG) Outline

More information

Impact of Earth Radiation Pressure on LAGEOS Orbits and on the Global Scale

Impact of Earth Radiation Pressure on LAGEOS Orbits and on the Global Scale 13-Po-22 Impact of Earth Radiation Pressure on LAGEOS Orbits and on the Global Scale Krzysztof Sośnica (1), Carlos Javier Rodríguez-Solano (2), Daniela Thaller (3), Adrian Jäggi (1), Rolf Dach (1), Gerhard

More information

Application of Accelerometer Data in Precise Orbit Determination of GRACE -A and -B

Application of Accelerometer Data in Precise Orbit Determination of GRACE -A and -B Chin. J. Astron. Astrophys. Vol. 8 (28), No., 63 61 (http://www.chjaa.org) Chinese Journal of Astronomy and Astrophysics Application of Accelerometer Data in Precise Orbit Determination of GRACE -A and

More information

Improved Modeling of GPS Block IIF Satellites for the GSPM13 Solar Radiation Pressure Model

Improved Modeling of GPS Block IIF Satellites for the GSPM13 Solar Radiation Pressure Model Improved Modeling of GPS Block IIF Satellites for the GSPM13 Solar Radiation Pressure Model Carly Sakumura, Aurore Sibois, Ant Sibthorpe and David Murphy Jet Propulsion Laboratory, California Institute

More information

Galileo Precise Orbit Determination at ESOC

Galileo Precise Orbit Determination at ESOC Navigation Support Office Galileo Precise Orbit Determination at ESOC Prof. Dr.-Ing. Werner Enderle Dr.-Ing. Erik Schoenemann Dr. Tim Springer Dr. Florian Dilssner Dr. Francesco Gini Dr. Claudia Flohrer

More information

Satellite baseline determination with phase cycle slip fixing over long data gaps

Satellite baseline determination with phase cycle slip fixing over long data gaps Satellite baseline determination with phase cycle slip fixing over long data gaps Grzegorz Michalak and Rolf König Overview The cycle slip fixing methode 3 solutions Float ambiguities Ambiguities fixed

More information

GNSS-specific local effects at the Geodetic Observatory Wettzell

GNSS-specific local effects at the Geodetic Observatory Wettzell GNSS-specific local effects at the Geodetic Observatory Wettzell Peter Steigenberger, Urs Hugentobler, Ralf Schmid Technische Universität München (TUM) Uwe Hessels, Thomas Klügel Bundesamt für Kartographie

More information

ESTIMATION OF NUTATION TERMS USING GPS

ESTIMATION OF NUTATION TERMS USING GPS ESTIMATION OF NUTATION TERMS USING GPS Markus Rothacher, Gerhard Beutler Astronomical Institute, University of Berne CH-3012 Berne, Switzerland ABSTRACT Satellite space-geodetic measurements have been

More information

Consistency of antenna products in the MGEX environment

Consistency of antenna products in the MGEX environment Consistency of antenna products in the MGEX environment A. Villiger 1, R. Dach 1, L. Prange 1, S. Schaer 12, A. Jäggi 1 1 Astronomical Institute, University of Bern, Bern, Switzerland 2 swisstopo, Wabern,

More information

Accelerometers for GNSS Orbit Determination

Accelerometers for GNSS Orbit Determination Accelerometers for GNSS Orbit Determination Urs Hugentobler, Anja Schlicht Technische Universität München 5th International Colloquium on Scientific and Fundamental Aspects of the Galileo Programme October

More information

PRECISE ORBIT DETERMINATION OF GPS SATELLITES FOR REAL TIME APPLICATIONS

PRECISE ORBIT DETERMINATION OF GPS SATELLITES FOR REAL TIME APPLICATIONS J. Astron. Space Sci. 18(2), 129 136 (2001) GPS,,,, PRECISE ORBIT DETERMINATION OF GPS SATELLITES FOR REAL TIME APPLICATIONS Hyung-Chul Lim, Pil-Ho Park, Jong-Uk Park, Jung-Ho Cho, Yong-Won Ahn GPS Research

More information

New satellite mission for improving the Terrestrial Reference Frame: means and impacts

New satellite mission for improving the Terrestrial Reference Frame: means and impacts Fourth Swarm science meeting and geodetic missions workshop ESA, 20-24 March 2017, Banff, Alberta, Canada New satellite mission for improving the Terrestrial Reference Frame: means and impacts Richard

More information

SLR and the Gravity Field

SLR and the Gravity Field SLR and the Gravity Field Daniela Thaller With contributions by: Krzysztof Sośnica (University of Wroclaw, Poland) Mathis Bloßfeld (DGFI-TUM, Germany) Gravity Field Determination Dedicated gravity field

More information

Nutation determination by means of GNSS

Nutation determination by means of GNSS Nutation determination by means of GNSS - Comparison with VLBI Nicole Capitaine, Kunliang Yao SYRTE - Observatoire de Paris, CNRS/UPMC, France Introduction Space geodetic techniques cannot be used for

More information

Earth gravity field recovery using GPS, GLONASS, and SLR satellites

Earth gravity field recovery using GPS, GLONASS, and SLR satellites Earth gravity field recovery using GPS, GLONASS, and SLR satellites Krzysztof Sośnica (1), Adrian Jäggi (1), Daniela Thaller (2), Ulrich Meyer (1), Gerhard Beutler (1), Rolf Dach (1) (1) Astronomical Institute,

More information

Results and Analyses of Debris Tracking from Mt Stromlo

Results and Analyses of Debris Tracking from Mt Stromlo Results and Analyses of Debris Tracking from Mt Stromlo Jizhang Sang 1, Ian Ritchie, Matt Pearson, and Craig Smith EOS Space Systems Pty Ltd, Australia Abstract In the last 2 years, EOS Space Systems has

More information

Climate Monitoring with Radio Occultation Data

Climate Monitoring with Radio Occultation Data Climate Monitoring with Radio Occultation Data Systematic Error Sources C. Rocken, S. Sokolovskiy, B. Schreiner, D. Hunt, B. Ho, B. Kuo, U. Foelsche Radio Occultation Claims Most stable Global Thermometer

More information

International Conference on Mechanics and Civil Engineering (ICMCE 2014)

International Conference on Mechanics and Civil Engineering (ICMCE 2014) International Conference on Mechanics and Civil Engineering (ICMCE 2014) Short-arc Orbit Determination Method for GEO Satellite of Partial Subsatellite Point Xiao-Jie LI 1,a*, Rui GUO 1,b, Jin HUANG 2,c,

More information

NGA GNSS Division Precise Ephemeris Parameters

NGA GNSS Division Precise Ephemeris Parameters NGA GNSS Division Precise Ephemeris Parameters Precise Ephemeris Units. Earth-centered, Earth-fixed Coordinate system Position Velocity GPS time Trajectory interval Standard Trajectory Optional Trajectory

More information

Table 5-1: POD Processing Overview

Table 5-1: POD Processing Overview 38 of 141 5. ORBITAL ACCURACY This section reports on the orbital accuracy attainable by the Copernicus POD Service with the current system. In order to perform an external validation of the orbital products,

More information

Galileo gravitational Redshift test with Eccentric satellites (GREAT)

Galileo gravitational Redshift test with Eccentric satellites (GREAT) Galileo gravitational Redshift test with Eccentric satellites (GREAT) P. DELVA and N. PUCHADES SYRTE, Observatoire de Paris, PSL Research University, CNRS, Sorbonne Universités, UPMC Univ. Paris 6, LNE

More information

Extended Filter For Real- 0me Mul0- GNSS Orbit Determina0on

Extended Filter For Real- 0me Mul0- GNSS Orbit Determina0on Etended Filter For Real- me Mul- GNSS Orbit Determinaon Bingbing Duan Juning Chen (SHAO) Content Background Etended filter Real-time data analsis Alication to BDS sstem Conclusion Background Real-time

More information

GALILEO CONSTELLATION: EVALUATION OF STATION KEEPING STRATEGIES.

GALILEO CONSTELLATION: EVALUATION OF STATION KEEPING STRATEGIES. GALILEO CONSTELLATION: EVALUATION OF STATION KEEPING STRATEGIES Daniel Navarro-Reyes (1), Anna Notarantonio (), Giacomo Taini (3) (1) ESA, ESTEC Keplerlaan 1 Noordwijk The Netherlands, +31 71 5658313,

More information

ASCAT RADIOMETRIC PERFORMANCE

ASCAT RADIOMETRIC PERFORMANCE ASCAT RADIOMETRIC PERFORMANCE J. J. W. Wilson Slide 1 BASIC ERROR CONTRIBUTIONS Static Calibration Bias Error Gain Error ε = ± 0.017 db Corresponding Cross-Section Error e ( ε ) = ± 0.034 db Quasi-static

More information

Status of the Gravitational Redshift Test with Eccentric Galileo Satellites

Status of the Gravitational Redshift Test with Eccentric Galileo Satellites Status of the Gravitational Redshift Test with Eccentric Galileo Satellites J. Ventura-Traveset, R. Prieto-Cerdeira, D. Blonski ICG 11, Sochi, 7 November 2016 Contents 1. Galileo satellites 5 & 6 Status

More information

Satellite Navigation GPS measurements and error sources

Satellite Navigation GPS measurements and error sources Satellite Navigation GPS measrements and error sorces Pictre: ESA AE4E08 Sandra Verhagen Corse 2010 2011, lectre 4 1 Today s topics Recap: GPS signal components Code Phase measrements psedoranges Carrier

More information

EESC Geodesy with the Global Positioning System. Class 4: The pseudorange and phase observables

EESC Geodesy with the Global Positioning System. Class 4: The pseudorange and phase observables EESC 9945 Geodesy with the Global Positioning System Class 4: The pseudorange and phase observables In previous classes we had presented the equation for the pseudorange as the true range biased by the

More information

Aquarius Data Release V2.0 Validation Analysis Gary Lagerloef, Aquarius Principal Investigator H. Kao, ESR And Aquarius Cal/Val Team

Aquarius Data Release V2.0 Validation Analysis Gary Lagerloef, Aquarius Principal Investigator H. Kao, ESR And Aquarius Cal/Val Team Aquarius Data Release V2.0 Validation Analysis Gary Lagerloef, Aquarius Principal Investigator H. Kao, ESR And Aquarius Cal/Val Team Analysis period: Sep 2011-Dec 2012 SMOS-Aquarius Workshop 15-17 April

More information

Research Article Time Synchronization and Performance of BeiDou Satellite Clocks in Orbit

Research Article Time Synchronization and Performance of BeiDou Satellite Clocks in Orbit Navigation and Observation Volume 213, Article ID 37145, 5 pages http://dx.doi.org/1.1155/213/37145 Research Article Time Synchronization and Performance of BeiDou Satellite Clocks in Orbit Han Chunhao,

More information

SLR-based orbit determination and orbit prediction of space debris objects

SLR-based orbit determination and orbit prediction of space debris objects Geodätische Woche Congress Center Essen, 8.- 10. Oktober 2013 SLR-based orbit determination and orbit prediction of space debris objects Harald Wirnsberger, Oliver Baur, Georg Kirchner Space Research Institute

More information

Galileo gravitational Redshift test with Eccentric satellites (GREAT)

Galileo gravitational Redshift test with Eccentric satellites (GREAT) Galileo gravitational Redshift test with Eccentric satellites (GREAT) P. DELVA and N. PUCHADES SYRTE, Observatoire de Paris, PSL Research University, CNRS, Sorbonne Universités, UPMC Univ. Paris 06, LNE

More information

TWO APPLICATIONS OF IMPROVEMENTS FOR AMVS OF NSMC/CMA

TWO APPLICATIONS OF IMPROVEMENTS FOR AMVS OF NSMC/CMA TWO APPLICATIONS OF IMPROVEMENTS FOR AMVS OF NSMC/CMA RE-NAVIGATION BASED ON FULL EARTH DISC IMAGE & CALCULATION OF RADIATION TRANSFER USING NWP DATA Zhang Xiaohu, Xu Jianmin National Satellite Meteorological

More information

Thermal Radiation Effects on Deep-Space Satellites Part 2

Thermal Radiation Effects on Deep-Space Satellites Part 2 Thermal Radiation Effects on Deep-Space Satellites Part 2 Jozef C. Van der Ha www.vanderha.com Fundamental Physics in Space, Bremen October 27, 2017 Table of Contents Mercury Properties & Parameters Messenger

More information

Co-location of VLBI with other techniques in space: a simulation study

Co-location of VLBI with other techniques in space: a simulation study Co-location of VLBI with other techniques in space: a simulation study B. Männel, M. Rothacher ETH Zürich, Geodesy and Geodynamics Lab 7 th IGS General Meeting, Madrid 212 1 Reference frame and local ties

More information

Estimation of polar motion, polar motion rates, and GNSS orbits in the IGS

Estimation of polar motion, polar motion rates, and GNSS orbits in the IGS Estimation of polar motion, polar motion rates, and GNSS orbits in the IGS G. Beutler, M. Meindl, S. Lutz, R. Dach, S. Scaramuzza, A. Sušnik, D. Arnold, A. Jäggi IGS Analysis Center Workshop Plenary #03

More information

Validation of Swarm ACC preliminary dataset

Validation of Swarm ACC preliminary dataset Validation of Swarm ACC preliminary dataset Aleš Bezděk Josef Sebera Jaroslav Klokočník Astronomical Institute, Czech Academy of Sciences, Czech Republic Swarm 5th Data Quality Workshop, Institut de Physique

More information

Geodesy Part of the ACES Mission: GALILEO on Board the International Space Station

Geodesy Part of the ACES Mission: GALILEO on Board the International Space Station Geodesy Part of the ACES Mission: GALILEO on Board the International Space Station 1 Svehla D, 2 Rothacher M, 3 Salomon C, 2 Wickert J, 2 Helm A, 2 Beyerle, G, 4 Ziebart M, 5 Dow J 1 Institute of Astronomical

More information

Augment BeiDou real time precise point positioning using ECMWF data

Augment BeiDou real time precise point positioning using ECMWF data https://doi.org/0.86/s40623-08-0870-0 FULL PAPER Augment BeiDou real time precise point positioning using ECMWF data Kemin Zhu, Lei Zhao, Wei Wang, Shoujian Zhang *, Renli Liu 2* and Jinling Wang 3 Open

More information

Consistent dynamic satellite reference frames and terrestrial geodetic datum parameters - status report PN 6 -

Consistent dynamic satellite reference frames and terrestrial geodetic datum parameters - status report PN 6 - Deutsches Geodätisches Forschungsinstitut (DGFI-TUM) Technische Universität München Consistent dynamic satellite reference frames and terrestrial geodetic datum parameters - status report PN 6 - Mathis

More information

Orbit Design Marcelo Suárez. 6th Science Meeting; Seattle, WA, USA July 2010

Orbit Design Marcelo Suárez. 6th Science Meeting; Seattle, WA, USA July 2010 Orbit Design Marcelo Suárez Orbit Design Requirements The following Science Requirements provided drivers for Orbit Design: Global Coverage: the entire extent (100%) of the ice-free ocean surface to at

More information

Operational Support by ESOC s GRAS Ground Support Network - Status and Outlook

Operational Support by ESOC s GRAS Ground Support Network - Status and Outlook ESA UNCLASSIFIED Releasable to the public Operational Support by ESOC s GRAS Ground Support Network - Status and Outlook R. Zandbergen, F.Wollenweber, C.Marquardt, W. Enderle and the ESOC and EUMETSAT

More information

ESTIMATING THE RESIDUAL TROPOSPHERIC DELAY FOR AIRBORNE DIFFERENTIAL GPS POSITIONING (A SUMMARY)

ESTIMATING THE RESIDUAL TROPOSPHERIC DELAY FOR AIRBORNE DIFFERENTIAL GPS POSITIONING (A SUMMARY) ESTIMATING THE RESIDUAL TROPOSPHERIC DELAY FOR AIRBORNE DIFFERENTIAL GPS POSITIONING (A SUMMARY) J. Paul Collins and Richard B. Langley Geodetic Research Laboratory Department of Geodesy and Geomatics

More information

Improvement of orbit determination for geostationary satellites with VLBI tracking

Improvement of orbit determination for geostationary satellites with VLBI tracking Article Astronomy September 2011 Vol.56 No.26: 2765 2772 doi: 10.1007/s11434-011-4647-0 SPECIAL TOPICS: Improvement of orbit determination for geostationary satellites with VLBI tracking HUANG Yong 1*,

More information

Titelmaster. Geometrical and Kinematical Precise Orbit Determination of GOCE

Titelmaster. Geometrical and Kinematical Precise Orbit Determination of GOCE Titelmaster Gemetrical and Kinematical Precise Orbit Determinatin f GOCE Akbar Shabanlui Institute f Gedesy and Geinfrmatin, University f Bnn 7th Octber 2010 Clgne, Germany Outline Precise Orbit Determinatin

More information

Call for space geodetic solutions corrected for non-tidal atmospheric loading (NT-ATML) at the observation level

Call for space geodetic solutions corrected for non-tidal atmospheric loading (NT-ATML) at the observation level Call for space geodetic solutions corrected for non-tidal atmospheric loading (NT-ATML) at the observation level Xavier Collilieux, Tonie van Dam, Zuheir Altamimi Outline: Context Why correcting for non-tidal

More information

Validation of GOME-2 MetopA and MetopB ozone profiles M. Hess 1, W. Steinbrecht 1, L. Kins 1, O. Tuinder 2 1 DWD, 2 KNMI.

Validation of GOME-2 MetopA and MetopB ozone profiles M. Hess 1, W. Steinbrecht 1, L. Kins 1, O. Tuinder 2 1 DWD, 2 KNMI. Validation of GOME-2 MetopA and MetopB ozone profiles M. Hess 1, W. Steinbrecht 1, L. Kins 1, O. Tuinder 2 1 DWD, 2 KNMI Introduction The GOME-2 instruments on the MetopA and MetopB satellites measure

More information

DETERMINATION OF THE STATION COORDINATES FOR QUALITY CONTROL OF THE SATELLITE LASER RANGING DATA S.

DETERMINATION OF THE STATION COORDINATES FOR QUALITY CONTROL OF THE SATELLITE LASER RANGING DATA S. DETERMINATION OF THE STATION COORDINATES FOR QUALITY CONTROL OF THE SATELLITE LASER RANGING DATA S. Schillak Space Research Centre of the Polish Academy of Sciences. Astrogeodynamic Observatory, Borowiec

More information

The in-plane Motion of a Geosynchronous Satellite under the Gravitational Attraction of the Sun, the Moon and the Oblate Earth

The in-plane Motion of a Geosynchronous Satellite under the Gravitational Attraction of the Sun, the Moon and the Oblate Earth J Astrophys Astr (1990) 11, 1 10 The in-plane Motion of a Geosynchronous Satellite under the Gravitational Attraction of the Sun, the Moon and the Oblate Earth Κ Β Bhatnagar Department of Mathematics,

More information

This is an author-deposited version published in: Eprints ID: 16117

This is an author-deposited version published in:  Eprints ID: 16117 Open Archive TOULOUSE Archive Ouverte (OATAO) OATAO is an open access repository that collects the work of Toulouse researchers and makes it freely available over the web where possible. This is an author-deposited

More information

GNSS space clocks assessment based on different IGS and MGEX data. Tung Thanh Thai, Giovanna Signorile, Ilaria Sesia

GNSS space clocks assessment based on different IGS and MGEX data. Tung Thanh Thai, Giovanna Signorile, Ilaria Sesia GNSS space clocks assessment based on different IGS and MGEX data Tung Thanh Thai, Giovanna Signorile, Ilaria Sesia 1 INRIM and GNSS Time Metrology INRIM is involved in characterization of atomic clocks

More information

Orbit Determination Using Satellite-to-Satellite Tracking Data

Orbit Determination Using Satellite-to-Satellite Tracking Data Chin. J. Astron. Astrophys. Vol. 1, No. 3, (2001 281 286 ( http: /www.chjaa.org or http: /chjaa.bao.ac.cn Chinese Journal of Astronomy and Astrophysics Orbit Determination Using Satellite-to-Satellite

More information

Laser de-spin maneuver for an active debris removal mission - a realistic scenario for Envisat

Laser de-spin maneuver for an active debris removal mission - a realistic scenario for Envisat Laser de-spin maneuver for an active debris removal mission - a realistic scenario for Envisat Daniel Kucharski Space Environment Research Centre, Mt Stromlo Observatory, Weston Creek ACT, 2611, AUSTRALIA

More information

Validation of Astrodynamic Formation Flying Models Against SPACE-SI Experiments with Prisma Satellites

Validation of Astrodynamic Formation Flying Models Against SPACE-SI Experiments with Prisma Satellites Validation of Astrodynamic Formation Flying Models Against SPACE-SI Experiments with Prisma Satellites Drago Matko, Tomaž Rodič, Sašo Blažič, Aleš Marsetič, Krištof Oštir, Gašper Mušič, Luka Teslić, Gregor

More information

We have processed RO data for climate research and for validation of weather data since 1995 as illustrated in Figure 1.

We have processed RO data for climate research and for validation of weather data since 1995 as illustrated in Figure 1. Real-time Analysis of COSMIC Data Christian Rocken, Doug Hunt, Bill Schreiner University Corporation for Atmospheric Research (UCAR) COSMIC Project Office Boulder, CO Abstract UCAR has analyzed GPS radio

More information

Real-Time Estimation of GPS Satellite Clocks Based on Global NTRIP-Streams. André Hauschild

Real-Time Estimation of GPS Satellite Clocks Based on Global NTRIP-Streams. André Hauschild Real-Time Estimation of GPS Satellite Clocks Based on Global NTRIP-Streams André Hauschild Agenda Motivation Overview of the real-time clock estimation system Assessment of clock product quality a) SISRE

More information

Precise Orbit Determination and prediction of the ISS in the frame of the ACES Mission

Precise Orbit Determination and prediction of the ISS in the frame of the ACES Mission Precise Orbit Determination and prediction of the ISS in the frame of the ACES Mission Wermuth Martin, Montenbruck Oliver German Space Operations Center (GSOC) German Aerospace Center (DLR) Oberpfaffenhofen,

More information

Satellite Geodesy and Navigation Present and Future

Satellite Geodesy and Navigation Present and Future Satellite Geodesy and Navigation Present and Future Drazen Svehla Institute of Astronomical and Physical Geodesy Technical University of Munich, Germany Content Clocks for navigation Relativistic geodesy

More information

THE PERTURBATION OF THE ORBITAL ELEMENTS OF GPS AND Y-BIAS. GPS satellite and each arc of one to three days on top of the a priori radiation pressure

THE PERTURBATION OF THE ORBITAL ELEMENTS OF GPS AND Y-BIAS. GPS satellite and each arc of one to three days on top of the a priori radiation pressure THE PERTURATION OF THE ORITAL ELEMENTS OF GPS SATELLITES THROUGH DIRET RADIATION PRESSURE AND Y-IAS Markus Rothacher, Gerhard eutler, Leos Mervart Astronomical Institute, University of erne H-3 ern, Switzerland

More information

Statistical Properties of Geosynchronous Satellite Photometry

Statistical Properties of Geosynchronous Satellite Photometry Statistical Properties of Geosynchronous Satellite Photometry Tamara E. Payne Applied Optimization Inc. Abstract This paper presents the general properties of a set of observations of satellites in Geosynchronous

More information

A Concept Study of the All-Electric Satellite s Attitude and Orbit Control System in Orbit Raising

A Concept Study of the All-Electric Satellite s Attitude and Orbit Control System in Orbit Raising Journal of Automation and Control Engineering Vol., No., December A Concept Study of the All-Electric Satellite s Attitude and Orbit Control System in Orbit Raising Yoshinobu Sasaki Japan Aerospace Exploration

More information

INTEGRATED OPERATIONAL PRECISE ORBIT DETERMINATION FOR LEO

INTEGRATED OPERATIONAL PRECISE ORBIT DETERMINATION FOR LEO INTEGRATED OPERATIONAL PRECISE ORBIT DETERMINATION FOR LEO J. Fernández Sánchez, F. M. Martínez Fadrique, A. Águeda Maté, D. Escobar Antón GMV S.A., Isaac Newton, 8760 Tres Cantos, Spain, Email: jfernandez@gmv.com,

More information

EESC Geodesy with the Global Positioning System. Class 6: Point Positioning using Pseuduorange

EESC Geodesy with the Global Positioning System. Class 6: Point Positioning using Pseuduorange EESC 9945 Geodesy with the Global Positioning System Class 6: Point Positioning using Pseuduorange GPS Positioning Solutions Point Positioning: Determination of the coordinates of a point with respect

More information

mission status & ISRU related activity in Japan

mission status & ISRU related activity in Japan SELENE mission status & ISRU related activity in Japan JAXA SELENE project Oct. 2, 2007 SELENE Kaguya overview Plasma Energy Angle and Composition Experiment (PACE) Upper Atmosphere and Plasma Imager (UPI)

More information

esa ACE+ An Atmosphere and Climate Explorer based on GPS, GALILEO, and LEO-LEO Occultation Per Høeg (AIR/DMI) Gottfried Kirchengast (IGAM/UG)

esa ACE+ An Atmosphere and Climate Explorer based on GPS, GALILEO, and LEO-LEO Occultation Per Høeg (AIR/DMI) Gottfried Kirchengast (IGAM/UG) ACE+ An Atmosphere and Climate Explorer based on GPS, GALILEO, and LEO-LEO Occultation Per Høeg (AIR/DMI) Gottfried Kirchengast (IGAM/UG) OPAC-1, September, 2002 1 Objectives Climate Monitoring global

More information

The Usefulness of WADGPS Satellite Orbit and Clock Corrections for Dual-Frequency Precise Point Positioning

The Usefulness of WADGPS Satellite Orbit and Clock Corrections for Dual-Frequency Precise Point Positioning The Usefulness of WADGPS Satellite Orbit and Clock Corrections for Dual-Frequency Precise Point Positioning Hyunho Rho and Richard B. Langley Department of Geodesy and Geomatics Engineering, University

More information

Assessment of the International Terrestrial Reference System 2014 realizations by Precise Orbit Determination of SLR Satellites

Assessment of the International Terrestrial Reference System 2014 realizations by Precise Orbit Determination of SLR Satellites Deutsches Geodätisches Forschungsinstitut (DGFI-TUM) Technische Universität München Assessment of the International Terrestrial Reference System 2014 realizations by Precise Orbit Determination of SLR

More information

Developments towards GNSS real-time service in GFZ

Developments towards GNSS real-time service in GFZ 1 Developments towards GNSS real-time service in GFZ Dousa, J., Ge, M., Chen J., Gendt, G. Helmholtz-Zentrum Potsdam, Deutsches GeoForschungsZentrum Geng, J. University Institute of Engineering Surveying

More information

Supplementary Figure 1

Supplementary Figure 1 Supplementary Figure 1 Rooftop kirigami tracking and schematics of module. (a) Thin-film kirigami constructs may be integrated with low-profile, rigid enclosures to ensure weatherproofing and compatibility

More information

Orbit Representation

Orbit Representation 7.1 Fundamentals 223 For this purpose, code-pseudorange and carrier observations are made of all visible satellites at all monitor stations. The data are corrected for ionospheric and tropospheric delays,

More information

Autonomous satellite orbit prediction

Autonomous satellite orbit prediction Autonomous satellite orbit prediction Mari Seppänen Department of Mathematics Tampere University of Technology P.O. Box 553, FI-33101 Tampere, Finland e-mail: mari.j.seppanen@tut.fi Abstract A method to

More information

James Paul Mason CU Boulder LASP

James Paul Mason CU Boulder LASP On-Orbit Performance and the First Flight of the BCT XACT 3-axis ADCS James Paul Mason CU Boulder LASP photo credit: NASA/ESA Tim Peake Matthew D. Baumgart, Thomas N. Woods, Chloe Downs, (BCT) Daniel Hegel,

More information

Third Body Perturbation

Third Body Perturbation Third Body Perturbation p. 1/30 Third Body Perturbation Modeling the Space Environment Manuel Ruiz Delgado European Masters in Aeronautics and Space E.T.S.I. Aeronáuticos Universidad Politécnica de Madrid

More information

Principles of the Global Positioning System Lecture 14

Principles of the Global Positioning System Lecture 14 12.540 Principles of the Global Positioning System Lecture 14 Prof. Thomas Herring http://geoweb.mit.edu/~tah/12.540 Propagation Medium Propagation: Signal propagation from satellite to receiver Light-time

More information

Tampere University of Technology Tampere Finland

Tampere University of Technology Tampere Finland IGNSS 2013 Surfer s Paradise, Queensland, Australia 16-18.7.2013 Estimation of initial state and model parameters for autonomous GNSS orbit prediction Juha Ala-Luhtala, Mari Seppänen, Simo Ali-Löytty,

More information

Evaluation of the impact of atmospheric pressure loading modeling on GNSS data analysis

Evaluation of the impact of atmospheric pressure loading modeling on GNSS data analysis Evaluation of the impact of atmospheric pressure loading modeling on GNSS data analysis R. Dach a, J. Böhm b, S. Lutz a, and P. Steigenberger c a Astronomical Institute, University of Bern, Bern, Switzerland

More information

EFFECTS OF DIRECT AND INDIRECT SOLAR RADIATION PRESSURE IN ORBITAL PARAMETERS OF GPS SATELITTES

EFFECTS OF DIRECT AND INDIRECT SOLAR RADIATION PRESSURE IN ORBITAL PARAMETERS OF GPS SATELITTES DOI: 10.2478/auom-2014-0039 An. Şt. Univ. Ovidius Constanţa Vol. 22(2),2014, 141 150 EFFECTS OF DIRECT AND INDIRECT SOLAR RADIATION PRESSURE IN ORBITAL PARAMETERS OF GPS SATELITTES Sergiu Lupu and Eugen

More information

Earth gravity field recovery using GPS, GLONASS, and SLR satellites

Earth gravity field recovery using GPS, GLONASS, and SLR satellites 13-01-08 Earth gravity field recovery using GPS, GLONASS, and SLR satellites Krzysztof Sośnica (1), Adrian Jäggi (1), Daniela Thaller (2), Ulrich Meyer (1), Christian Baumann (1), Rolf Dach (1), Gerhard

More information