Renewable Grids & Microgrids
Grid-forming converters, low-inertia systems, battery storage, protection, stability and renewable integration using PowerFactory, PSCAD and MATLAB.
Research-focused engineering support for Australian PhD scholars and postgraduate researchers working on renewable power systems, microgrids, EVs, control, RF, CFD, FEA and multidisciplinary simulation projects.
Grid-forming converters, low-inertia systems, battery storage, protection, stability and renewable integration using PowerFactory, PSCAD and MATLAB.
Battery energy management, thermal studies, charging systems, power electronics and Simscape-based electric-vehicle modelling.
Power quality, drives, condition monitoring, automation, control and engineering optimisation for energy-intensive systems.
Thermal management, structural FEA, fluid-flow analysis, COMSOL multiphysics and ANSYS-based engineering studies.
Australian research projects often emphasize renewable integration, grid resilience, energy storage, electrification and strong technical validation. We can structure the simulation workflow around the methodology, software version, expected plots, comparison cases and documentation requirements supplied by your university or supervisor.
Platform selection follows the required physics, system scale, controller detail and deliverables.
How grid-forming inverter digital twins, virtual inertia and adaptive control are shaping low-inertia renewable power-system research in 2026.
Read research guideHow to study nodal inertia estimation, RoCoF and adaptive frequency control in 100% converter-dominated power systems using PowerFactory.
Read research guideA research guide to EV battery thermal management using CFD, digital twins, liquid cooling, PCM and AI-based optimization.
Read research guide