Beamforming Code Implementation for Uniform Circular Arrays in Signal Processing
Implementation of beamforming algorithms for uniform circular arrays (UCA) with code optimization techniques and steering vector calculations
Explore MATLAB source code curated for "均匀圆阵" with clean implementations, documentation, and examples.
Implementation of beamforming algorithms for uniform circular arrays (UCA) with code optimization techniques and steering vector calculations
Implementation of joint azimuth and elevation angle estimation with uniform circular arrays employing MUSIC and MNM algorithms for signal processing applications
DOA estimation of signals using uniform circular arrays with azimuth and elevation angle estimation, visualized through 3D graphical representations. Includes implementation details for array signal processing algorithms and coordinate transformation methods.
Evaluating azimuth estimation performance across varying SNR levels using a uniform circular array; implementing spectral peak search algorithm to locate maximum value coordinates; calculating root mean square error through 100 Monte Carlo trials with code implementation insights
Uniform circular array mode space algorithm for direction of arrival (DOA) estimation using virtual array elements
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.
Implementation of direction estimation algorithms using uniform circular arrays (UCA) with simulated power spectrum visualization. Comparative analysis with uniform linear arrays (ULA) demonstrates superior estimation performance of circular configurations, including robustness analysis under varying signal-to-noise ratios.
This project provides source code implementing MUSIC algorithm for Direction of Arrival (DOA) estimation, specifically designed for uniform circular antenna array configurations. The implementation demonstrates signal processing techniques for phase difference analysis and spatial spectrum computation.
Directionality simulation and modeling of uniform circular arrays, including original implementation of parameterized simulations to generate directional patterns with customizable parameters for analysis
Implementation of MUSIC Algorithm for Direction of Arrival Estimation with Uniform Circular Arrays