ENERGY · OPTIMIZATION · RESILIENCE
EAC UFLS
Adaptive grid-protection decision support.
Grid-stability simulation, photovoltaic-aware feeder selection, load-shedding optimization and protection-scheme management for an island power system.
Critical InfrastructureSimulationIoT & Real-Time
Grid telemetry
→Contingencies
→Optimization
→Protection scheme
→Operational review
MY CONTRIBUTION
Architecture through operations.
Designed the architecture, simulation connectors, feeder-ranking models and secure boundaries, including optimization logic for feeder allocation, relay thresholds, telemetry ingestion and asynchronous contingency simulations.
System ArchitectSimulation IntegrationBackend Engineering
ENGINEERING HIGHLIGHTS
What the system required.
01Frequency nadir and RoCoF analysis
02Adaptive staged load shedding
03PV-aware net-load modeling
04Critical-load constraints
05N-1 / N-2 simulations
06SCADA and historian integration
WHY IT MATTERS
Translates power-system stability research into decision support for a low-inertia, high-renewable island grid.