MATLAB Implementation of GPS Signal Tracking Using Phase-Locked Loop
GPS signal tracking implementation using phase-locked loop technology, including code loop tracking and carrier tracking loop with algorithm explanations and key MATLAB functions
Explore MATLAB source code curated for "gps信号" with clean implementations, documentation, and examples.
GPS signal tracking implementation using phase-locked loop technology, including code loop tracking and carrier tracking loop with algorithm explanations and key MATLAB functions
KLMS algorithm for GPS signal anti-jamming methods with MATLAB implementation and code analysis
MATLAB simulation for GPS signal acquisition and tracking with comprehensive documentation
A comprehensive MATLAB simulation program comparing BPSK modulation for GPS signals with BOC signal power spectral density analysis, featuring side-by-side visualization and parameter adjustment capabilities for enhanced learning
Application Background GPS signal acquisition, tracking, and positioning are frequently employed in undergraduate and graduate studies. This program provides a comprehensive implementation of GPS signal acquisition, tracking, and positioning algorithms, along with a real GPS signal sample for processing. Key Technologies The program utilizes non-coherent acquisition methods, second-order carrier and code tracking loops, and least-squares positioning algorithms for receiver location calculation.
This GPS signal generation program provides an easy-to-understand implementation that quickly helps users master GPS signal formats and generation methods through practical code examples and algorithm explanations.
MATLAB implementation of GPS signal acquisition algorithms, featuring both coherent and non-coherent integration methods with code examples.
This study verifies the effectiveness of the power inversion algorithm in eliminating high-power single-frequency interference from GPS signals, covering both GPS signal generation and algorithm implementation with code-level descriptions.
Implementation of GPS signal acquisition algorithms covering both time-domain and frequency-domain approaches, with detailed code implementation insights and algorithmic considerations.
Comprehensive MATLAB simulation of GPS signal generation, acquisition, and tracking processes with complete source code, designed to help users understand and implement GPS system simulations