Fast Fourier Transform in OFDM - MATLAB Algorithm Design
A personally designed MATLAB algorithm for Fast Fourier Transform in OFDM systems, featuring classical implementation with code-level descriptions and computational efficiency analysis.
Explore MATLAB source code curated for "经典" with clean implementations, documentation, and examples.
A personally designed MATLAB algorithm for Fast Fourier Transform in OFDM systems, featuring classical implementation with code-level descriptions and computational efficiency analysis.
The most classic frequency domain filtering algorithm in SAR filtering, known for its excellent performance in noise reduction and signal enhancement.
Complete classical MIMO-OFDM simulation (MATLAB) includes modules: create_channel.m, BitLoad.m, ComputeSNR.m, chow_algo.m, EnergyTableInit.m, campello_algo.m, ResolvetheLastBit.m, modulate.m, precode.m, ifft_cp_tx_blk.m, channel.m, fft_cp_rx_blk.m, shape.m - implementing comprehensive beamforming, signal processing, and optimization algorithms for wireless communication systems.
Classical block matching approaches in stereo vision, featuring prominent algorithms like SAD and SSD that calculate pixel-wise comparisons between left/right views to determine minimum disparity and derive depth information through correlation-based cost aggregation.
Sullivan's Classic MATLAB FDTD Tutorial with implementation source code for computational electromagnetics simulation
A MATLAB-based classic toolbox for computing optical flow, featuring comprehensive algorithm implementations and visualization capabilities.
Simulation of the classical radar angle-of-arrival estimation algorithm, MUSIC algorithm, which offers high-resolution target detection capabilities through eigen-decomposition of signal covariance matrices.
MATLAB program for RAKE receiver implementation, featuring classic RAKE simulation with multipath diversity processing and finger assignment algorithms
A classic MATLAB simulation program for distillation column modeling, featuring comprehensive implementation with detailed algorithm explanations and key function descriptions - an excellent resource for learning chemical process simulation techniques.
Classical 3D Topology Optimization Code Using SIMP (Solid Isotropic Material with Penalization) Method