Area of research
Control and Systems Engineering · Electrical and Electronic Engineering
Research interest
Research focused on Modular design and Hardware-in-the-loop simulation, with related work in Voltage, Electric power system, Process (computing). Notable publications include 'Multifunctional megawatt scale medium voltage DC test bed based on modular multilevel converter (MMC) technology', 'Role of hardware-in-the-loop simulation testing in transitioning new technology to the ship', and 'How scattering parameters can benefit the development of all-electric ships'.
An Innovative Approach to the Design of Medium Voltage Power Electronics Printed Circuit-Coards
A Reconfigurable Megawatt-Scale Power Hardware-in-the-Loop Simulation System for Virtual Motors
Averaged-value Modeling and Modelability Analysis for an Operational Megawatt-scale Medium-Voltage Modular Multilevel Converter
Harmonic Currents Generated by MV Modular Converters and Thermal Insulation Aging of Polymeric Cables
Common-Mode Characterization of a Modular Multilevel Converter in a Megawatt-scale Medium-Voltage DC Test Bed
Development of Grounding and Fault Localization in Power Electronic-Interfaced MVDC Shipboard Power and Energy Systems
Exploration of Power Density Based Scaling Laws for Naval Shipboard Compatible Modular Multilevel Converters
Common-mode equivalent modeling of a notional two-zone MVDC ship power system
Considering effects of parasitic coupling to ground in a switching power amplifier
Multifunctional megawatt scale medium voltage DC test bed based on modular multilevel converter (MMC) technology
How scattering parameters can benefit the development of all-electric ships
Approach to develop ship design evaluation rule-base
Single-phase three-stage SST modeling using RTDS for controller hardware-in-the-loop application
Conversion of PSS®E models into RSCAD models: Lessons learned
Role of hardware-in-the-loop simulation testing in transitioning new technology to the ship
System studies for a bi-directional advanced hybrid drive system (AHDS) for application on a future surface combatant
Developing a validated real-time system-level thermal simulation for future all-electric ships