Dissertation > Excellent graduate degree dissertation topics show

Application and Research on GPS Integer Ambiguity in Attitude Determination

Author: ShiLin
Tutor: HuangXiaoFang
School: Wuhan University of Technology
Course: Signal and Information Processing
Keywords: attitude determination carrier phase measurement integer ambiguity Least-squares AMBiguity Decorrelation Adjustment modifying LAMBDA
CLC: P228.4
Type: Master's thesis
Year: 2008
Downloads: 446
Quote: 3
Read: Download Dissertation

Abstract


Use of carder phase measurements of the carder gesture to the application of GPS measurement is a new area.GPS measurements posture not only low-cost,but can also provide high accuracy to meet the needs of the general carrier.As GPS navigation and positioning itself with the capacity,GPS attitude measurement system can be widely applied in the route navigation,precision landing,and automatic drive. Therefore,GPS attitude measurement has tremendous potential applications,is a new attitude measurement direction of development.Based on the CPU 1.70GHz,memory 256M,for the Windows XP operating system environment,using MATLAB 7.0 software programming,the paper focuse on analysis and simulation to determine the full realization of ambiguity algorithm and GPS attitude measurement algorithm.The main task of this paper included the completion simulation of the whole ambiguity search algorithm and GPS single epoch single-frequency attitude determination algorithm to achieve the design and simulation.In the whole ambiguity search algorithm aspect,the paper investigated LAMBDA and MLAMBDA algorithms,simulated the two algorithms using MATLAB.And analyzed their performance from three aspects:decorrelation processing,running time and success rate.The results showed that in the considerable success rate circumstances, MLAMBDA algorithm decorrelation has better effect,the process of running a shorter time,thereby enhancing the entire determine the efficiency of ambiguity.In GPS attitude determination algorithm aspect,the paper designed one single epoch single-frequency attitude determination algorithm,and applied LAMBDA and MLAMBDA algorithm into it,and simulated the algorithm using MATLAB.Firstly, analyzes the RINEX data exchange formats,reads key data for attitude measurement algorithm with the actual satellite ephemeris data.Secondly,simulates seven satellite locations.Thirdly,using the pseudo-range measurements of C/A code,through the pseudo-range observation and linear differential equations,and iterative calculates the receiver position.Then,on the best constellation choice principle,achieves a high degree angle calculation and satellite GDOP star-election,and simulates the receiver and four satellite locations.In accordance with the main and alcor stars,completes carder phase two-carrier difference equation,and importes LAMBDA algorithm and MLAMBDA algorithm to complete the whole ambiguity solution,and gives running time of each process,which has proved in the former chapter.Finally,completes the baseline vector solution,calculates single epoch attitude angle,and analyzes solution for ten epoch attitude angle’s accuracy,which indicates single epoch single-frequency test attitude algorithm has good accuracy.

Related Dissertations

  1. Study on Attitude Determination Method of Distributed Moving Warship OTHR System,P228.4
  2. Research on GPS-based Attitude Determination System,U675.6
  3. Research on GPS Single-baseline Attitude Determination,P228.4
  4. Three-axis stabilized satellite attitude determination and control system,V448.2
  5. Research and Simulation on the Positioning Arithmetic with GPS Carrier Phase,TP391.9
  6. The Research on Applying Virtual Instrument Technology to Measure and Monitor Low-frequency Time-codes Time Service Signal,TP391.9
  7. The Elementary Theory and Software Realization of GPS Baseline Solution,P228.4
  8. Applications of Nonlinear Bayesian Filtering Algorithms to Spacecraft Attitude Determination,V448.224
  9. Interference suppression technology for satellite navigation system,TN966
  10. Studies on the Attitude Determination and Control System of High Precision Three-Axis Stabilized Satellite,V448
  11. Micro-satellite attitude and orbit determination technique of self-,V448.22
  12. Research on Satellite Autonomous Navigation and Attitude Determination Based on Spaceborne Sensors,V448.22
  13. Precision dual FOV star sensor key technology research,V448.2
  14. Research on Attitude Control System and Simulation of a Certain Satellite,V448.2
  15. Research on Micro-Satellite Attitude & Orbit Determination Based on GPS,V448.2
  16. Based on multi- sensor data fusion technology research satellite attitude determination,V448.22
  17. The Design and Realization of Embedded Flight Control System for SUAV Based on ARM,V227
  18. The Hardware System Design of CMOS Star Sensor,TP212
  19. Satellite Attitude Determination Based on Star Sensor and Gyro System with Multiplicative Noise,V448.22
  20. GPS/GLONASS Attitude Determination Research under Long Endurance and High Dynamic Conditions,V249

CLC: > Astronomy,Earth Sciences > Surveying and Mapping > Geodesy > Satellite geodesy and space geodesy > Global Positioning System (GPS)
© 2012 www.DissertationTopic.Net  Mobile