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8:30 -
GPS Overview
Review of Fundamental GPS Theory
Origins of GPS; Navigation Fundamentals and
Requirements; Space, Control and User Segments; System Error and
Accuracies; Geometry Considerations
GPS Signal Structure
RF propagation; Fresnel zones; Reflection; Refraction;
Attenuation; Modulation; Pseudo-Random Noise (PRN) Codes and Their
Properties; Frequency Domain Overview; Navigation Information
9:45 -
Observables
Pseudorange; Doppler; Carrier Phase; Carrier Phase
Ambiguity
Satellite Ranging Concept
Measurement Overview; Pseudorange Measurements Using
Correlation; Dilution Of Precision (DOP) and User Equivalent Range
Error (UERE); Performance Measures
11:00 -
Link Budget
Radiated Power; Free Space Loss; Received Power;
System Specifications
Reference System
Definition of WGS-84; Datum Transformations;
Horizontal and Vertical Datums
12:00 - Lunch
on your own
1:30 -
GPS Receiver Operation #1
Overview
Block Diagram; GPS Receiver Performance Issues;
Classes of GPS Receivers
RF Front End
Antenna; Local Oscillator (Characterizing Time Scales,
FTS, Allan Variance); Preamplifier; Friss’ Formula; C/No
and its Relevance; Relationship Between C/No
and SNR; Down Conversion and Frequency Mixers; Sampling
2:45 -
Signal Processing Overview
Overall Objectives; Signal Acquisition; Signal
Tracking; Navigation Message Demodulation; Measurement Generation;
Navigation Solution
4:00 - Signal Tracking & Measurement Generation
Objectives and Limitations; Doppler Removal; Code
Correlation; Coherent Accumulation; Tracking Loops (DLL, FLL, PLL);
Measurement Generation
5:00 - Day One Ends
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