Fault ride-through (FRT) studies
Fault ride-through (FRT) defines how a generating unit must stay connected and support the network through and after a voltage disturbance. An FRT study verifies, usually in EMT, that the plant rides through the required voltage-time profile and injects reactive current correctly during the fault.
When this study is needed.
- A grid code requires demonstration of low- (and often high-) voltage ride-through for the connection.
- The plant is inverter-based, where ride-through depends on control settings rather than machine physics.
- Protection or control settings have changed and compliance must be re-confirmed.
- Site behaviour during a real event needs to be reconciled with the compliance case.
How we approach it.
- Identify the applicable ride-through profile and reactive-current requirements from the grid code.
- Apply the specified fault types and durations at the connection point in the EMT model.
- Check voltage recovery, the magnitude and timing of fast fault-current / reactive-current injection, and continued connection.
- Test the corners: deepest voltage dip, longest duration, weakest grid, and relevant dispatch points.
- Document pass/fail against each criterion with annotated waveforms.
Tools we use.
- PSCAD / EMTDC for time-domain fault simulation
- Vendor IBR / HVDC control models
- RMS tools (PowerFactory, PSS®E) for context and screening
Scenarios & operating points.
- Symmetrical and asymmetrical faults across the required voltage-dip profile
- Minimum and maximum grid strength at the connection point
- Different active-power dispatch levels
- High-voltage ride-through where the code requires it
What you receive.
- FRT compliance report mapped to each grid-code clause
- Annotated voltage and current waveforms per case
- Statement of control settings used and any dependencies
- Validated model files supporting the result
Evidence that stands up to review.
Results are tied directly to the code's acceptance criteria, clause by clause, with the governing (worst-case) scenarios identified rather than a single nominal run. Assumptions and settings are documented for independent review.
Comparable experience.
Case-study write-ups for this service are in preparation. To discuss directly relevant project experience, brief us — we can talk it through, under NDA where appropriate.
Questions engineers ask.
Is FRT the same as fast fault-current injection?
Why test the weakest grid case?
Do FRT settings interact with stability?
Brief us on a study.
Send a one-paragraph scope — the system, the codes that apply, and the question you need answered. We typically reply within two working days.
Related: Consultancy hub · BESS & inverter compliance · EMT & grid-code compliance · SSO / impedance studies
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