See this document in CiteSeerX!

Satellite Orbit Determination Using A Single-Channel Global Positioning System Receiver  (Make Corrections)  
Mark L. Psiaki



  Home/Search   Context   Related

 
View or download:
cornell.edu/Psiaki...gpsorbdeter_01.pdf
Cached:  PS.gz  PS  PDF   Image  Update  Help

From:  cornell.edu/Psiak...psiaki_papers (more)
(Enter author homepages)

Rate this article: (best)
  Comment on this article  
(Enter summary)

Abstract: A proposed satellite orbit determination system has been analyzed, one that uses measurements from a single-channel Global Positioning System (GPS) receiver. The purpose of this study is to predict the likely efficacy of a low-power, low-mass autonomous orbit determination system. The system processes the pseudo range outputs of the receiver using an extended Kalman filter. It also has the option of using the carrier phase measurements. The receiver cycles through different GPS satellites,... (Update)

Similar documents based on text:   More   All
0.5:   Tests of Magnetometer/Sun-Sensor Orbit Determination Using.. - Hee Jung And   (Correct)
0.2:   Block Acquisition of Weak GPS Signals in a Software Receiver - Psiaki (2001)   (Correct)
0.2:   Spacecraft Attitude Rate Estimation from Geomagnetic Field.. - Psiaki, Oshman   (Correct)

BibTeX entry:   (Update)

@misc{ psiaki-satellite,
  author = "Mark L. Psiaki",
  title = "Satellite Orbit Determination Using A Single-Channel Global Positioning
    System Receiver",
  url = "citeseer.ist.psu.edu/394265.html" }
Citations (may not include all citations):
663   Practical Optimization (context) - Gill, Murray et al. - 1981
135   Englewood Cliffs (context) - Kailath - 1980
85   Introduction to Random Signals and Applied Kalman Filtering (context) - Brown, Hwang - 1997
48   Factorization Methods for Discrete Sequential Estimation (context) - Bierman - 1977
8   ALEXIS Spacecraft Attitude Reconstruction with Thermal/Flexi.. (context) - Psiaki, Theiler et al. - 1997
8   Attitude Determination (context) - Cohen - 1996
3   ReducedDynamic Technique for Precise Orbit Determination of .. (context) - Yunck, Thornton - 1991
3   Ionospheric Effects on GPS (context) - Klobuchar - 1996
2   GPS Error Analysis (context) - Parkinson - 1996
2   Initial Demonstration of a Point Solution Algorithm for Orbi.. (context) - Reichert, Axelrad et al. - 1997
2   Theory and Practice (context) - Hofmann-Wellenhof, Lichtenegger et al. - 1997
2   National Oceanic and Atmospheric Administration (context) - Atmosphere - 1976
1   Onboard Stationkeeping of Geosynchronous Satellites Using a .. (context) - Chao, Bernstein - 1994
1   Dynamic Orbit Determination for the EOS Laser Altimeter Sate.. (context) - Rim, Davis et al. - 1996
1   Orbit Determination (context) - Yunck - 1996
1   GPS Receiver Architecture and Expected Performance for Auton.. (context) - Moreau, Axelrad et al. - 1999
1   gps/almanacs (context) - GPS, Guard et al. - 2000
1   Ephemeris and Clock Navigation Message Accuracy (context) - Zumberge, Bertiger - 1996
1   1 st Assessment of GPS-Based Reduced Dynamic Orbit Determina.. (context) - Yunck, Bertiger et al. - 1994

Documents on the same site (http://www.mae.cornell.edu/Psiaki/psiaki_papers.html):   More
Magnetic Torquer Attitude Control Via Asymptotic Periodic Linear.. - Psiaki   (Correct)
Smoother-Based GPS Signal Tracking in a Software Receiver - Psiaki   (Correct)
Attitude Estimation for a Flexible Spacecraft in an.. - Psiaki, Klatt..   (Correct)

Online articles have much greater impact   More about CiteSeer.IST   Add search form to your site   Submit documents   Feedback  

CiteSeer.IST - Copyright Penn State and NEC