Power Systems & Smart Grids
Power Systems & Smart Grids engineering simulation hub with project videos, research methodologies, validation ideas and related technical guides. This hub connects project demonstrations, technical guides and research-title pages so readers can move from implementation to methodology and research extension without relying on isolated pages.
What this hub covers
Technical scope
Power Systems & Smart Grids is organized here as a research and simulation hub rather than a simple filter. The page connects project watch pages, question-led tutorials, research-title pages and validation guidance around the same engineering topic.
Core topics
- load flow
- stability
- protection
- renewable integration
- faults
- HVDC
- FACTS
- IEEE test systems
Research and validation guidance
Compare operating cases, stability margins, voltage/frequency response, losses and protection performance.
Where a page discusses results, it should clearly identify whether a number is an observed simulation result, an expected result, an example value, or a paper-reported value. Values are not fabricated to make pages longer.
What to document in a reproducible study
- model assumptions and operating conditions
- software release and solver/study settings
- parameter table or geometry/material definition
- test cases and baseline method
- quantitative validation metrics
- limitations and conditions under which conclusions apply
Related project watch pages
- Solar PV–Fed Dual Active Bridge Converter with MPPT and Single-Phase-Shift Control for Three-Phase Grid Integration in MATLAB Simulink
- Low-Rate MEMS Vibratory Gyroscope Modeling and Coriolis-Based Angular Rate Measurement in COMSOL Multiphysics
- Design and Multiphysics Analysis of a Mode-Matched Low-Rate MEMS Vibratory Gyroscope with Electrostatic Tuning and Capacitive Readout in COMSOL Multiphysics
- Novelty and Scientific Rationale of the DFBGS 5.9-GHz Printed ANSYS HFSS Antenna
- Design and Optimization of a Handheld Electrically Small 90 MHz PCB Loop Antenna for RFID Tag Applications Using CST Studio Suite
- 28 GHz RIS Beam Steering in ANSYS HFSS Full 8×8 Array for 6G Wireless Communication
- Novel Asymmetric U-Slot Microstrip Patch Antenna with Defected Ground Structure for 5.8 GHz Applications Using ANSYS HFSS 2024 R2
- Design and Simulation of a 28 GHz 1-Bit Reconfigurable Intelligent Surface for 6G Wireless Communication Using ANSYS HFSS
- Comparative Analysis of Conventional, Series, Parallel, LLC & CLLC SiC DAB Converters 48V–380V 1kW MATLAB Simulink
- Performance Enhancement of a Biconical Antenna Using a Frequency Selective Surface for 2.45 GHz Wireless Applications
- Wearable Tri-Band Antenna Design for 2.4 GHz, 3.8 GHz & 5 GHz Using ANSYS HFSS 2024 Rogers RO5880
Related research titles
- Grid-Forming Inverter Coordination for Weak Multi-Area Transmission Networks
- Coordinated FACTS and BESS Control for Voltage Stability Enhancement
- Wide-Area Oscillation Damping Using PMU-Assisted Converter Control
- AI-Assisted Dynamic Security Assessment for Renewable-Rich Transmission Grids
- Impedance-Based Stability Assessment of Multi-Inverter Power Systems
- Resilience-Oriented Restoration of Smart Grids After Extreme Events
- Adaptive Under-Frequency Load Shedding for High-Renewable Power Systems
- Nodal-Inertia-Aware Adaptive Frequency Control for Converter-Dominated Power Systems
Related technical guides
- IEEE 33 Bus System Power Flow in MATLAB
- Grid-Forming Inverter Digital Twins for Low-Inertia Renewable Grids
- Digital Twin + AI for Predictive Maintenance in Engineering Systems
- Flexible 4-Port MIMO Antennas for Smart Vehicle Communication
- Wireless Power Transfer for Multi-Vehicle EV Charging in Simulink
- Grid-Supportive Green Hydrogen with PEM Electrolysers in PowerFactory
- AI-Based Adaptive Protection for Inverter-Based Microgrids
- Nodal Inertia and RoCoF-Aware Adaptive Frequency Control in PowerFactory
- Adaptive RBF Neural Network MPPT for Hybrid Renewable DC Microgrids
- Photonic Crystal MEMS Sensors in COMSOL Multiphysics
- SiC DAB Converter Topologies: Conventional vs Series/Parallel/LLC/CLLC
- Reconfigurable Intelligent Surface Antennas for 6G Research in HFSS
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