UWB Simulation Channel Models with MATLAB Implementation
MATLAB-based UWB simulation channel models featuring comprehensive code annotations - review TITLE section for implementation details
Explore MATLAB source code curated for "信道模型" with clean implementations, documentation, and examples.
MATLAB-based UWB simulation channel models featuring comprehensive code annotations - review TITLE section for implementation details
Implementation of OFDM's autocorrelation cyclic function featuring a 6-path Rayleigh fading channel model with comprehensive delay considerations. The simulation generates cyclic autocorrelation diagrams, cross-sectional plots, and allows customizable Monte Carlo iterations (typically set to 200 runs). Includes MATLAB-based implementation for channel modeling and statistical analysis.
Simulation of 3GPP LTE channel model using SCM methodology to generate channel coefficients with MATLAB implementation approach
Implementation of the COST 207 channel model in MATLAB with code examples for simulating wireless communication environments
Simulation Code for 3GPP LTE Downlink Channel Model with Implementation Details
This repository contains extensive MATLAB simulations for MIMO systems, including channel ergodic capacity analysis and various channel modeling approaches with detailed implementation code.
MATLAB channel model used to simulate the improvement of ISI in OFDM systems, featuring code implementations for multipath propagation and cyclic prefix integration.
MATLAB-based simulation of 802.11n channel models featuring comprehensive code implementation for wireless communication analysis
The SUI-3 model defined for urban environments in IEEE802.16 systems serves as an essential channel modeling framework for WiMAX systems, providing realistic simulation scenarios for wireless communication performance analysis.
A MATLAB channel model designed to simulate inter-user interference in multi-user communication systems, featuring code implementation for interference analysis and system performance evaluation.