Part I.- Fundamental Concepts of Distance Measurement Using Synchronized Clocks.- Introduction to the Global Positioning System.- GPS Signal Structure and Use.- Solving for SV Position.- Solving for User Position.- Part II.- GPS Receiver Hardware Fundamentals.- Functional Implementation of a GPS Receiver.- Part III.- GPS Time and Frequency Reception.- The Zarlink 12 GPS Receiver.- Carrier Phase Measurement & Turbo Rogue Receiver.- JPL Turbo Rogue Receiver.- The L2C Signal.- Appendix A: Sliding Correlatiors, Delay Based Descriminators and Processing Gain with GPS Applications.- Appendix B: Pseudo Random Binary Codes and the C/A Code Generator.- Appendix C: BPSK Modulators and Demodulators.- Appendix D: Subframe Format.- Appendix E: Glossary.
Fundamentals of GPS Receivers: A Hardware Approach
Part I.- Fundamental Concepts of Distance Measurement Using Synchronized Clocks.- Introduction to the Global Positioning System.- GPS Signal Structure and Use.- Solving for SV Position.- Solving for User Position.- Part II.- GPS Receiver Hardware Fundamentals.- Functional Implementation of a GPS Receiver.- Part III.- GPS Time and Frequency Reception.- The Zarlink 12 GPS Receiver.- Carrier Phase Measurement & Turbo Rogue Receiver.- JPL Turbo Rogue Receiver.- The L2C Signal.- Appendix A: Sliding Correlatiors, Delay Based Descriminators and Processing Gain with GPS Applications.- Appendix B: Pseudo Random Binary Codes and the C/A Code Generator.- Appendix C: BPSK Modulators and Demodulators.- Appendix D: Subframe Format.- Appendix E: Glossary.