Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research interests include Real-time simulation and control systems, Advanced Battery Technologies Research, Microgrid Control and Optimization, and HVDC Systems and Fault Protection.
Route Optimization for Ships Using Ammonia-Based Fuel: A Hybrid Genetic Algorithm–Particle Swarm Optimization Approach
Evaluation of Linear Implicit Quantized State System method for analyzing mission performance of power systems
High Temperature Superconducting Cable Study Driving M&S Tool Development
A Multi-Institutional Approach to Delivering Shared Curricula for Developing a Next-Generation Energy Workforce
Technical cross-fertilization between terrestrial microgrids and ship power systems
Primary and backup protection for fault current limited MVDC shipboard power systems
Mechanical power-hardware-in-the-loop: Emulation of an aeroderivative twin-shaft turbine engine
I/UCRC Phase II: Grid-connected Advanced Power Electronic Systems (GRAPES)
I/UCRC Fundamental Research: Gallium Nitride Optical Isolation for Wide Bandgap Power Electronic Systems
Collaborative Research: I/UCRC on Grid-Connected Advanced Power Electronic Systems (GRAPES)
COLLABORATIVE PROPOSAL: I/UCRC: Center for Grid-Connected Advanced Power Electronic Systems (GRAPES)
Collaborative Research: Hierarchical Integration and Control of Distributed Energy Resources
Engineering Research Equipment Grant: Fast Multichannel Digital Data Acquisition System
Research Initiation: Mechanisms for Recovery of Electrical Insulation Strength in Inter-Conductor Vacuum Gaps