Mechanical Simulation
Structural FEA, CFD, thermal analysis, multibody dynamics, vehicle systems, composites, rotating machinery and digital twins.
Explore mechanical →Research-grade simulation for standalone and interconnected engineering systems—from structures, fluids and machines to power networks, electronics, antennas, sensors, drives and cross-domain digital twins.
Build a focused model inside one engineering stream or connect several physics and control layers into one validated system-level workflow.
Structural FEA, CFD, thermal analysis, multibody dynamics, vehicle systems, composites, rotating machinery and digital twins.
Explore mechanical →Power systems, microgrids, renewable energy, BESS, protection, motor drives, power electronics and grid stability.
Explore electrical →Converters, embedded control, signal processing, intelligent controllers, robotics, sensors and AI-assisted system optimization.
Explore electronics →Antennas, microwave structures, wireless power transfer, electric machines, magnetic devices, EMC and field-coupled sensors.
Explore EM & RF →Electromechanical, electrothermal, electromagnetic-thermal, fluid-structure and control-integrated co-simulation across software platforms.
Explore coupled systems →Reduced-order models, parameter estimation, condition monitoring, predictive control, intelligent optimization and virtual system validation.
Explore digital twins →We connect mechanical behaviour, electrical power, electronic control and electromagnetic fields so interface losses, thermal limits, dynamic interactions and controller decisions are evaluated together.
Motors, drives, EV powertrains, actuators, robotics, regenerative braking and controlled mechanisms.
Batteries, converters, motors and electronics coupled to heat generation, cooling and material limits.
Wireless charging, magnetic actuators, electric machines, sensors and force-producing field devices.
Microgrids, protection, converter control, intelligent energy management and hardware-oriented validation.
The workflow defines every physical interface, numerical assumption and validation target so standalone and coupled results can be explained in a viva, dissertation, journal paper or engineering review.
Research objective, participating domains, exchanged variables, operating envelope, assumptions and validation criteria.
Prepare geometry, circuits, controls, fields, materials, mesh, solver inputs and software-to-software interfaces.
Configure time steps, coupling strategy, parameter sweeps, nonlinear iterations and numerical-quality checks.
Compare domain-level and system-level metrics against references, limits, baselines, sensitivity and uncertainty.
Watch selected mechanical, electrical, electromagnetics and multidomain simulation projects running directly on the homepage.
Explore a quarter-car vehicle suspension model with magnetorheological damper control, road-disturbance response, sprung-mass motion and ride-comfort analysis.
OPEN DEDICATED VIDEO PAGE →Review a biomedical antenna simulation that evaluates tissue interaction, resonance behaviour and electromagnetic response for non-invasive breast-tumour detection research.
OPEN DEDICATED VIDEO PAGE →Watch a closed-loop autonomous-driving model covering lane-change trajectory generation, lateral control, steering response and vehicle-path tracking.
OPEN DEDICATED VIDEO PAGE →Explore electrostatic field coupling around advanced 7 nm FinFET interconnects, including nanoscale geometry, potential distribution and surrounding-conductor effects.
OPEN DEDICATED VIDEO PAGE →Explore practical engineering guides for simulation workflows, thesis planning, validation and multidisciplinary project development.
A practical guide to matlab simulink phd research topics, including project scope, model workflow, validation, measurable novelty and thesis-ready reporting.
READ ENGINEERING GUIDE →A practical guide to comsol multiphysics project ideas phd, including project scope, model workflow, validation, measurable novelty and thesis-ready reporting.
READ ENGINEERING GUIDE →A practical guide to ansys hfss antenna project ideas, including project scope, model workflow, validation, measurable novelty and thesis-ready reporting.
READ ENGINEERING GUIDE →A practical guide to electric vehicle matlab simulink projects, including project scope, model workflow, validation, measurable novelty and thesis-ready reporti
READ ENGINEERING GUIDE →A practical guide to multidomain engineering simulation, including project scope, model workflow, validation, measurable novelty and thesis-ready reporting.
READ ENGINEERING GUIDE →A practical guide to validate simulation results thesis, including project scope, model workflow, validation, measurable novelty and thesis-ready reporting.
READ ENGINEERING GUIDE →Mechanical limits, electrical transients, control responses, field distributions and thermal behaviour are interpreted together against design requirements and accepted benchmarks.
From focused single-domain studies to PhD-level coupled methodologies, the model architecture, validation depth and documentation can be adapted to your academic or engineering objective.
Explore research supportSend the participating engineering domains, software preferences, interfaces, expected outputs and deadline for a focused technical discussion.