Doppler Frequency Estimation with Wavelength Diversity Algorithm

Resource Overview

This program implements Doppler frequency estimation capable of determining Doppler ambiguity numbers and baseband Doppler frequencies, ultimately providing unambiguous Doppler frequency results. The algorithm is based on the wavelength diversity method proposed in an IEEE article, featuring MATLAB/Octave-compatible implementation with functions for signal processing and ambiguity resolution.

Detailed Documentation

This document discusses a crucial program designed for Doppler frequency estimation. The primary function of this implementation is to estimate Doppler ambiguity numbers and baseband Doppler frequencies, thereby obtaining accurate unambiguous Doppler frequency measurements. The algorithm is developed based on the wavelength diversity technique presented in an IEEE publication, featuring robust signal processing capabilities through functions that handle frequency analysis and ambiguity resolution. This proven method demonstrates high effectiveness and has gained widespread recognition across various applications. The program plays significant roles in multiple domains including wireless communications, radar systems, and motion detection technologies. Through utilizing this implementation, researchers can enhance their understanding and analysis of Doppler frequency phenomena, while obtaining precise data and results for both research and practical applications. The code structure incorporates efficient matrix operations and frequency domain processing, making it particularly valuable for signal processing engineers and researchers working with Doppler-based systems.