MATLAB Implementation of Array Signal Processing with Uniform Circular Array Mode Space Algorithm
Uniform circular array mode space algorithm for direction of arrival (DOA) estimation using virtual array elements
Explore MATLAB source code curated for "DOA估计" with clean implementations, documentation, and examples.
Uniform circular array mode space algorithm for direction of arrival (DOA) estimation using virtual array elements
Implementation of Direction of Arrival (DOA) estimation simulation using Root-MUSIC algorithm with MATLAB, featuring signal preprocessing and eigenvalue decomposition techniques.
Direction of Arrival (DOA) estimation based on uniform linear arrays employing the Multiple Signal Classification (MUSIC) algorithm for signal source localization, with enhanced implementation details.
MATLAB implementation of Direction of Arrival (DOA) estimation simulation using the modified MUSIC algorithm with performance comparison analysis
Implementation of Direction of Arrival (DOA) estimation for sparse uniform circular arrays using Weighted Subspace Fitting (WSF) method with steepest descent optimization algorithm for parameter tuning.
Direction of Arrival (DOA) and Direction of Departure (DOD) Estimation for MIMO Radar Systems with 2D-MUSIC Algorithm Implementation
Signal and Information Processing - MATLAB algorithms for Direction of Arrival (DOA) estimation in array signal processing. This source code implements Root-MUSIC and MVDR algorithms with practical implementation details and performance analysis capabilities.
This algorithm implements DOA (Direction of Arrival) estimation for near-field signals, with simulation results demonstrating the method's effectiveness through performance comparisons and robustness analysis.
A comprehensive higher-order spectral analysis toolbox featuring common parametric model estimation methods for higher-order spectra, along with Direction of Arrival (DOA) estimation and time delay estimation algorithms.
MUSIC spectral estimation program capable of frequency estimation, direction of arrival (DOA) estimation, and power spectrum analysis with subspace-based algorithm implementation