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Protection and automation · in the field
In progress

PROTEGE

Adaptive protection coordination for distribution feeders with high distributed-generation penetration.

Coordination
[coordinator's name]
Duration
2025 — Ongoing
Funding
CNPq · P&D Enel
Team
2 researchers
Operating time
38 ms
False trips
−72%
Feeders
6
HIL tests
1,240

The problem

Distribution relays are set once, for a fixed short-circuit scenario. With distributed generation, power flow reverses direction throughout the day and the settings stop coordinating: healthy branches trip unnecessarily while real faults take too long to clear.

Approach

We estimate topology and generation injection in near real time and recompute relay setting groups, switched via IEC 61850 communication. The whole scheme is validated in hardware-in-the-loop testing before going live on the feeder.

38 ms operating time for a three-phase fault with 40% DG on the feeder.
72% drop in unwanted trips across the six pilot feeders.
Scheme compatible with already-installed relays — no hardware swap needed.

Milestones

Feeder modeling and validation with field data Completed
Hardware-in-the-loop testing with commercial relays Completed
Pilot across six utility feeders In progress
Settings manual and team training 2027

Publications

Adaptive overcurrent coordination for feeders with high DER penetration
IEEE Transactions on Power Delivery · 2025 · DOI
HIL validation of adaptive protection schemes in distribution networks
SBSE · 2026 · DOI

Project team

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[coordinator's name]

Coordinator

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[PhD student's name]

PhD Student

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