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A Systematic Framework for Tuning Open-Source Multifunctional IBR Models To Emulate OEM Black-Box Fault Dynamics

  • S. Chakraborty
  • , P. Pinheiro
  • , R. Bainy
  • , B. Johnson
  • , S. Manson
  • , J. Wang
  • , A. Hoke
  • , C. Kruse
  • University of Idaho
  • Schweitzer Engineering Laboratories, Inc.
  • Kauai Island Utility Cooperative

Research output: NLRPoster

Abstract

This paper presents a systematic framework to tune a generic IBR EMT model to match with an OEM provided balckbox inverter model based on the fault current responses. The key learnings and findings are summarized as follows: The tunable key parameters include inner control loops and current limiters to align the fault current magnitude, sequence content, and phase trajectories with the OEM models across diverse fault type and locations. The tuned model's fidelity is validated through comparative analysis with an OEM blackbox model, assessing both the fault current response and the responses of multiple relay elements. The results demonstrate the tuned generic model can trigger relay decision logic that is identical or near identical to that of the OEM model, thus generating very good match model for fault studies.
Original languageAmerican English
PublisherNational Laboratory of the Rockies (NLR)
Number of pages1
DOIs
StatePublished - 2026

Publication series

NamePresented at the IEEE PES T&D Conference & Exhibition, 4-7 May 2026, Chicago, Illinois

NLR Publication Number

  • NLR/PO-5D00-100374

Keywords

  • grid-following inverter
  • grid-forming inverter
  • IEEE 2800
  • transmission line protection

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