Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Microgrid Control and Optimization, Electric Motor Design and Analysis, Advanced Battery Technologies Research, and Magnetic Properties and Applications.
A Network-Aware Cyber-Physical Testbed for Internet of Energy Systems: Communication-Centric Control and Cyber Vulnerability Analysis
Hardware-in-the-Loop Implementation of Grid-Forming Inverter Controls for Microgrid Resilience to Disturbances and Cyber Attacks
Egypt’s Renewable Turn: From Benban to Campus Labs Driving Energy Sustainability
Stability Enhancement of DC Microgrid Operation Involving Hybrid Energy Storage and Pulsed Loads
A Review of Multi-Microgrids Operation and Control from a Cyber-Physical Systems Perspective
Leveraging Software-Defined Networking for Secure and Resilient Real-Time Power Sharing in Multi-Microgrid Systems
Coupling Performance of Cored and Coreless Circular Coils for WPTS: Experimental Validation Under Misalignment Scenarios
Experimental Validation of a Cyber-Resilient Frequency Control for Islanded Microgrids
Optimized Design of Sub-Harmonic Synchronous Machines
Novel Two-Layer Sub-Harmonic Vernier Machine
Toward Sustainable Power Systems: Securing Energy Sharing in Networked Microgrids
Energy Storage Systems: Technologies and High-Power Applications
A review of battery state of charge estimation and management systems: Models and future prospective
Comparative Study-Based Data-Driven Models for Lithium-Ion Battery State-of-Charge Estimation
A Cyber-HIL for Investigating Control Systems in Ship Cyber Physical Systems Under Communication Issues and Cyber Attacks
Assessment of Cyber-Physical Inverter-Based Microgrid Control Performance under Communication Delay and Cyber-Attacks
Optimal Adaptive Ultra-Local Model-Free Control Based-Extended State Observer for PMSM Driven Single-Axis Servo Mechanism System
Enhancing Cyber-Physical Resiliency of Microgrid Control under Denial-of-Service Attack with Digital Twins
State-of-the-Art Electric Vehicle Modeling: Architectures, Control, and Regulations
Operation and Coordinated Energy Management in Multi-Microgrids for Improved and Resilient Distributed Energy Resource Integration in Power Systems
Hardware Implementation of Hybrid Data Driven-PI Control Scheme for Resilient Operation of Standalone DC Microgrid
Performance evaluation of communication networks for networked microgrids
Enhanced DC Voltage and Power Regulation Using Intelligent Data-Driven Control for AC/DC Converters in DC Microgrid Applications
Controller Hardware-in-the-Loop Testbed of a Distributed Consensus Multi-Agent System Control under Deception and Disruption Cyber-Attacks
Real-Time Co-Simulation Implementation for Voltage and Frequency Regulation in Standalone AC Microgrid with Communication Network Performance Analysis across Traffic Variations
A Cyber-Physical Platform to Assess Power System Operation With Communication Network and Heterogeneous Controllers
Hardware Implementation of a Resilient Energy Management System for Networked Microgrids
Dual Inverter Parallel Consequent Pole PM-Assisted Hybrid Sub-Harmonic Synchronous Machines
Dual Inverter Parallel Consequent Pole PM-Assisted Two-Layer Sub-Harmonic Synchronous Machine
A Comprehensive Review of Architecture, Communication, and Cybersecurity in Networked Microgrid Systems