
MATLAB Simulink Power Converter Model
Power-electronics converter model view with block-level structure for control and switching simulation.
These examples use real project screenshots from MATLAB Simulink, COMSOL, ANSYS Maxwell, HFSS and controller result plots. Each case study focuses on visible engineering evidence, model structure and result interpretation.
Each card uses a different uploaded screenshot so visitors can see varied software environments, model geometries and result outputs.

Power-electronics converter model view with block-level structure for control and switching simulation.

Microgrid droop-control Simulink model with distributed sources and control interconnections.

Lane-change status visualization with radar, vision detections, tracks and planned trajectory.

BLDC motor speed-control model with adaptive PID implementation and simulation setup.

Induction motor under-voltage fault simulation model with fault blocks and monitoring outputs.

Capacitive pressure sensor model geometry and multiphysics setup for MEMS research.

Two-area load-frequency control model using PSO-PID controller blocks and system-level interconnections.

Ferrite motor electromagnetic geometry with Maxwell analysis setup and 3D model view.

Acceleration, torque, slip ratio and velocity comparison plots across multiple control strategies.

HFSS 3D metamaterial structure and retrieved electromagnetic parameter workflow.

3D magnetic scalar potential result for twisted superconducting coil research.

Nanofluid heat-transfer simulation showing isothermal contour results and thermal distribution.

Antenna geometry model in HFSS for electromagnetic and wireless communication research.

7 nm FinFET interconnect/electrostatics model view for semiconductor research studies.
Result-focused examples showing how a research topic can move from an initial model challenge to clearer simulation evidence, comparison graphs and publication-style interpretation.
Before: frequency-response study required controller tuning, comparison plots and a clearer Simulink implementation path.
After: PSO-PID controller workflow with model evidence, LFC scope explanation and result-comparison direction for thesis discussion.
Before: single-control behaviour needed a structured comparison across acceleration, torque, slip ratio and velocity.
After: multi-controller plot set prepared for result interpretation, controller-performance discussion and research documentation.
Before: device concept required geometry setup, physics selection, boundary-condition explanation and output planning.
After: COMSOL model evidence with sensor-domain positioning, result-plot direction and methodology support for PhD-level reporting.
Before: antenna topic needed a clear 3D geometry workflow, port definition and electromagnetic simulation evidence.
After: HFSS model view and wireless-domain explanation aligned with antenna-design methodology and output interpretation.
Client privacy and academic integrity are protected. Trust is presented through screenshot evidence, transparent case studies, project scope notes and measurable simulation-output explanations.
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