MATLAB Source Code for Reactive Power Optimization in Power Systems
Basic MATLAB implementation for reactive power optimization in electrical power systems with algorithm descriptions
Explore MATLAB source code curated for "电力系统" with clean implementations, documentation, and examples.
Basic MATLAB implementation for reactive power optimization in electrical power systems with algorithm descriptions
Primary computation of power system unit commitment using high-intelligence algorithms with superior convergence performance and stable iteration characteristics
Simulink wiring diagram for power system islanding detection based on the Slip-Mode Frequency Shift (SMS) method, implementing an active anti-islanding protection algorithm with frequency drift triggering mechanisms.
Power System Transient Stability Analysis using Segmented Calculation Method with MATLAB Implementation Code
An improved 9-node power system load flow calculation algorithm demonstrating enhanced accuracy through optimized numerical methods and practical implementation examples
This repository contains MATLAB source code for complex network analysis algorithms specifically designed for power system research. The implementation includes graph theory-based approaches for modeling electrical grid topologies and analyzing network properties.
Implementation of reactive power optimization in power systems using interior point method without toolbox dependencies - detailed graduate thesis with comprehensive algorithm explanations and code implementation details
Enhanced differential evolution algorithm designed for optimization tasks in power systems, particularly applicable to reactive power optimization and distribution network reconfiguration with improved convergence properties.
Probabilistic DC Load Flow Algorithm Applied in Power Systems with Implementation Approaches
This MATLAB/SIMULINK-based study analyzes small-signal (low-frequency oscillation) stability in simple power systems through four key approaches: 1) Building system simulation models using SIMULINK blocks and parameter configuration 2) Comparative analysis of AVR and PSS impacts on stability using controlled simulation scenarios 3) Root locus plotting for exciter gain KA and PSS gain KSTAB with stability margin evaluation 4) Rotor speed response simulation under 5-step voltage reference changes with/without PSS implementation