HVDC Systems and Fault ProtectionElectromagnetic Compatibility and Noise SuppressionPower Quality and Harmonics

Ramon Abritta, G. M. Guerreiro, Alexey Pavlov, Børre Tore Børresen, Elisabetta Tedeschi, Ranjan Sharma, I. C. da Silva Junior

2026.1.1IEEE Open Access Journal of Power and Energy

DOI: 10.1109/oajpe.2026.3673646

Abstract

The generator side of inverter-based resources (IBRs) interfaced with back-to-back converters is electrically decoupled from the grid. During electrical faults, grid-following IBRs behave as voltage-dependent current sources due to grid code requirements and converter control. This paper presents Newton-Raphson formulations for estimating short-circuit currents from IBRs using novel power flow modeling approaches to address voltage-dependent current sources. The work shows how to represent dq0 current injections, which are typically implemented in control architectures based on phase-locked loops. The power flow formulations are adapted to capture grid codes with different characteristics, such as the injection of negative-sequence currents during unbalanced faults. Comparisons against a field-validated electromagnetic transients (EMT) model reveal mean absolute errors of less than 0.5% for the proposed approach when estimating steady-state short-circuit currents from type IV wind turbine generators under grid-following control.

Citation format

ABRITTA, Ramon, et al. Power flow-based estimation of short-circuit currents from inverter-based resources. IEEE Open Access Journal of Power and Energy, 2026, 13: 229–239.