PSCAD consultancy & EMT studies

When converter controls, protection or a weak grid decide whether a connection works, RMS models are not enough. We build, validate and run PSCAD models with the vendors' own equipment models, and write it up so the operator's reviewer can follow every step.

Phase voltages · single-phase faultIllustrative
00.10.20.3-101t (s)V (pu)fault
Phase voltages at the connection point through a single-phase fault.

When you need it.

  1. The plant is converter-based: batteries, solar, wind, HVDC or STATCOMs.
  2. The connection point is weak, or close to other converters.
  3. The operator has asked for EMT evidence: ride-through, fast fault current or control stability.
  4. The effect you care about is subsynchronous, harmonic or in the waveform itself.

How we run it.

  1. 01

    Scope

    Agree the question, the connection point and the code or spec that applies.

  2. 02

    Build

    Assemble the network equivalent, the plant and the vendor control models.

  3. 03

    Validate

    Check the model against the expected steady state and known responses first.

  4. 04

    Run

    Pick the scenarios that could decide the result, then run them.

  5. 05

    Report

    Read the waveforms against the criteria and write down what we assumed.

What we use and what we test.

Tools

  • PSCAD / EMTDCMain EMT tool
  • PowerFactory · PSS®ERMS context, model exchange
  • Python automationBatch runs

Scenarios we run

  • Balanced and unbalanced faults at and near the connection point
  • Grid strength, fault level and X/R across their range
  • Credible dispatch and outage combinations
  • Voltage and frequency disturbances across the required envelope

What you get.

  • ModelValidated PSCAD model files and a model quality statement
  • MethodMethod, assumptions and scenario list, written down
  • ResultsResult waveforms, read against each criterion
  • ReportA report ready for the operator's independent review

How we check it

Every conclusion traces back to a validated model and a documented scenario. We record tool versions, model sources and assumptions, so the work can be rerun and challenged.

Questions engineers ask.

When do I actually need EMT rather than RMS?
When the question depends on fast converter controls, fault ride-through, fast fault-current injection, harmonics, or sub-/super-synchronous interactions. RMS remains fine for steady-state, load-flow and slower dynamics; many projects use RMS for breadth and EMT for the cases that govern the result.
Can you work from a vendor's black-box model?
Yes. Most IBR and HVDC studies use the manufacturer's encrypted control model in PSCAD. We integrate and validate it within the network model; where a detailed model is available, we can use that instead.
What makes an EMT model “credible” to an operator?
A documented validation against expected behaviour, clearly stated assumptions, the right scenarios, and an evidence trail (model sources, tool versions, settings) that a reviewer can reproduce.