Research on Spectrum Allocation Techniques in Cognitive Radio Networks
Research on spectrum allocation techniques in cognitive radio networks, including academic papers and implementation programs with algorithm demonstrations
Explore MATLAB source code curated for "研究" with clean implementations, documentation, and examples.
Research on spectrum allocation techniques in cognitive radio networks, including academic papers and implementation programs with algorithm demonstrations
1. Research on FPGA implementation of FIR digital filters (programmed using VHDL language with optimized filter architecture design) 2. Design of multi-functional microcontroller download development hardware and software (implemented using VB/VC++ and C programming languages with integrated download board firmware) 3. Mini media player development (designed with Visual Basic 6.0 featuring multimedia playback capabilities for multiple audio/video formats and image browsing functions) 4. Compact capacitance and inductance testing instrument design with precision measurement algorithms
Network multicasting represents a cutting-edge research area where this program implements immune ant colony optimization to enhance multicast routing efficiency through biologically-inspired algorithm design.
My primary focus is on research in image segmentation algorithms, implemented using neural networks. The segmentation program leverages deep learning techniques with key functions for feature extraction and pixel classification.
Hamming-weighted antenna pattern implementation using MATLAB, which has been thoroughly tested and is highly valuable for researchers studying radar antenna systems.
PCA+Fisher methodology integrates kernel functions with principal component analysis and Fisher linear discriminant analysis for enhanced face recognition performance
MATLAB simulation program for direct torque control (DTC) of electric motors, featuring comprehensive code implementation with flux and torque hysteresis controllers, switching table logic, and motor model integration
A dynamic matrix predictive control program designed for research on advanced predictive control algorithms
Costas Loop research for carrier synchronization, phase-locking at 3.563MHz carrier frequency with 3.5628MHz initial frequency. Visualization of phase-locking cycles and phase variation through plotted graphs, including implementation approaches for phase error correction algorithms.
The study and simulation of network self-similar traffic flow based on FARIMA methodology includes three MATLAB functions: av.m (for computing mean values), far.m (for calculating fractional moving averages), and zsrs.m (for determining standardized residuals). Detailed implementation approaches and algorithmic explanations are available in the associated paper and model documentation.