Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Control theory (sociology), Computer science, Model predictive control, Pulse-width modulation, Electric vehicle, and Weighting.
Comparative assessment of single-loop droop controlled grid-forming converter and its damping enhancement
An Assessment of Multistage Reward Function Design for Deep Reinforcement Learning-Based Microgrid Energy Management
Orderly Charging Strategy Based on Optimal Time of Use Price Demand Response of Electric Vehicles in Distribution Network
A multimodal approach to chaotic renewable energy prediction using meteorological and historical information
Application of choosing by advantages to determine the optimal site for solar power plants
Mid- and long-term strategy based on electric vehicle charging unpredictability and ownership estimation
Denoising Transient Power Quality Disturbances Using an Improved Adaptive Wavelet Threshold Method Based on Energy Optimization
An Integrated Approach Improved Fast S-transform and SVD Noise Reduction for Classification of Power Quality Disruptions in Noisy Environments
Short-term wind power prediction based on preprocessing and improved secondary decomposition
An Optimal Secondary Multi-Bus Voltage and Reactive Power Sharing Control Based on Non-Iterative Decoupled Linearized Power Flow for Islanded Microgrids
Common-Mode Voltage Reduction Algorithm for Photovoltaic Grid-Connected Inverters with Virtual-Vector Model Predictive Control
Long-Prediction-Horizon Near-Optimal Model Predictive Grid Current Control for PWM-Driven VSIs With <i>LCL</i> Filters
Predictive Direct Power Control for Dual-Active-Bridge Multilevel Inverter Based on Conservative Power Theory
Near-Optimal MPC Algorithm for Actively Damped Grid-Connected PWM-VSCs With <i>LCL</i> Filters
Comparison of Current Control Strategies Based on FCS-MPC and D-PI-PWM Control for Actively Damped VSCs With LCL-Filters