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Evaluation of a Reduced-Order Model for IBR Fault Response Representation via OEM Blackbox Models: Preprint
Conference proceeding

Evaluation of a Reduced-Order Model for IBR Fault Response Representation via OEM Blackbox Models: Preprint

Owen Cornmesser, Soham Chakraborty, Rasel Mahmud, Jing Wang, Andy Hoke, Paulo Pinherio, Brian Johnson and Romulo Bainy
pp.1-5
IEEE Power and Energy Society General Meeting (Montreal, Canada, 07/19/2026–07/23/2026)
07/24/2026

Abstract

IEEE Std 2800-2022 negative sequence current POWER TRANSMISSION AND DISTRIBUTION reduce order model short circuit representation transmission line protection Solar Energy
Driven by the need to capture the electromagnetic transients of transmission lines, inverter switching behavior, and detailed control systems, electromagnetic transient (EMT) studies have become increasingly important in industry, such as IBR interconnection study and fault study. However, original equipment manufacturer (OEM) inverter models typically include extensive parameters and proprietary settings that are unavailable to protection engineers. This paper introduces a data-driven, reduced-order model (ROM) developed as a PSCAD library component for use in EMT-based fault studies. The ROM replicates key OEM model behaviors without requiring detailed knowledge of control design or parameterization. The accompanying Python automation scripts streamline data generation, parameter fitting, and validation. The ROM's performance is demonstrated through comparison with both IEEE 2800-compliant and non-compliant OEM models in a real-world power system. Relay responses show nearly identical results, while simulation runtime is reduced by an average of 32.8%, highlighting the ROM's practicality for protection engineers.
url
https://docs.nlr.gov/docs/fy26osti/98155.pdfView

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