# MV Feeder Protection Settings: 50/51, 67, 79 and IEC 60255 Evidence

> A setting workflow for medium-voltage feeder IEDs covering overcurrent, earth fault, directionality, auto-reclose, CT burden, grading and minimum/maximum fault cases.

- **Category:** MV Feeder Protection & Control
- **Author:** Voltformer Feeder Protection Engineering
- **Publication Date:** 2026-09-12
- **Reading Time:** 9 min read
- **Key Tags:** #IEC 60255-1, #IEC 60255-151, #ANSI 50 / 51, #ANSI 67 / 79, #Protection Coordination
- **Canonical URL:** https://voltformer.com/articles/mv-feeder-protection-settings-50-51-67-79-iec-60255
- **Markdown Source:** https://voltformer.com/articles/mv-feeder-protection-settings-50-51-67-79-iec-60255.md

### 1. Begin with Verified Inputs

IEC 60255-1:2022 states common requirements for measuring relays and protection equipment. IEC 60255-151:2009 specifies minimum requirements for overcurrent and undercurrent protection, including measurement and time-delay characteristics.

A setting file is only as good as the source data. Freeze CT ratio and class, VT ratio and earthing, feeder impedance, source minimum and maximum fault, cable thermal limit, transformer inrush, motor/inverter infeed and breaker clearing time before calculating settings.

### 2. Function Map

| Function | Typical purpose | Main setting risk |
|---|---|---|
| **50 / 51** | Phase instantaneous and time overcurrent | Lost selectivity or failure to detect remote faults |
| **50N / 51N** | Earth-fault protection | Wrong zero-sequence path, residual CT error or excessive neutral sensitivity |
| **67 / 67N** | Directional phase or earth fault | Incorrect polarizing quantity, angle convention or network operating mode |
| **79** | Automatic reclosing | Unsafe reclosing onto a permanent fault, trapped generation or an out-of-sync source |
| **50BF** | Breaker-failure backup | Missing breaker status, wrong timer or inadequate upstream trip path |

### 3. Grading Workflow

1. Calculate the highest load, cold-load pickup, motor start, transformer inrush and permissible emergency loading.
2. Determine minimum and maximum fault current at each protected bus and the remote end of the feeder.
3. Select pickup above the declared load envelope but below the minimum fault that must be detected.
4. Apply the selected time-current curve and grade with downstream relays, fuses, reclosers and upstream protection.
5. Recheck directional elements for every source and line configuration.

Do not claim selectivity from a single fault case. The final evidence must show operating time, breaker clearing time, CT saturation margin and grading margin for all required cases.

### 4. Commissioning and Change Control

- Test injection, binary I/O, trip circuit supervision, breaker failure, interlocks, autoreclose block and event records.
- Confirm the relay firmware, setting group, CT polarity, phase rotation, time source and communication map.
- Store the approved setting file with the one-line revision and the source-data calculation.
- Any feeder topology, transformer tap, source contribution or CT change requires a controlled protection review.

*Reference: IEC 60255-1:2022; IEC 60255-151:2009; IEC 60255-27:2023; IEC 61850 where digital interfaces are used.*

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## Related Equipment & Catalog Cross-References

- [Transformers Catalog](https://voltformer.com/catalog.md): Browse medium and high voltage power transformers.
- [Medium Voltage Switchgear](https://voltformer.com/catalog.md): Air-insulated (AIS) and gas-insulated (GIS) switchgear panels.
- [Protection & Control Relays](https://voltformer.com/catalog.md): ANSI 87T differential, overcurrent and feeder protection relays.
- [Machine-Readable API Catalog](https://voltformer.com/agent-catalog.json): Autonomous agent catalog data.
