Area of research
Electrical and Electronic Engineering · Renewable Energy, Sustainability and the Environment
Research interest
Research interests include Photovoltaic System Optimization Techniques, Microgrid Control and Optimization, Advanced DC-DC Converters, and solar cell performance optimization.
A Graph Neural Network Based Deep Learning Predictor for Spatio-Temporal Group Solar Irradiance Forecasting
Interactive Grid Synchronization-Based Virtual Synchronous Generator Control Scheme on Weak Grid Integration
A fast and accurate approach for power losses quantification of photovoltaic power systems under partial‐shading conditions
Adaptive Droop Control of Multi-Terminal HVDC Network for Frequency Regulation and Power Sharing
Nested Formation Approach for Networked Microgrid Self-Healing in Islanded Mode
Single-Switch High Step-Up DC–DC Converter With Low and Steady Switch Voltage Stress
A comprehensive review of topologies for photovoltaic I–V curve tracer
Novel Piecewise Linear Formation of Droop Strategy for DC Microgrid
Forecasting-Based Power Ramp-Rate Control Strategies for Utility-Scale PV Systems
A Novel Sensorless Photovoltaic Power Reserve Control With Simple Real-Time MPP Estimation
Modified Beta Algorithm for GMPPT and Partial Shading Detection in Photovoltaic Systems
Review and qualitative analysis of submodule-level distributed power electronic solutions in PV power systems
Comprehensive Parameterization of Solar Cell: Improved Accuracy With Simulation Efficiency
Subsynchronous Resonance Mitigation for Series-Compensated DFIG-Based Wind Farm by Using Two-Degree-of-Freedom Control Strategy
Grid-Connected Photovoltaic Generation Plants: Components and Operation
Two Degrees of Freedom Active Damping Technique for $LCL$ Filter-Based Grid Connected PV Systems
Fault ride through capability for grid interfacing large scale PV power plants
Fault Ride-Through Configuration and Transient Management Scheme for Self-Excited Induction Generator-Based Wind Turbine