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Open access 2026

Impact of Inter-Winding Magnetic and Capacitive Coupling on SFRA Signature

Sweep Frequency Response Analysis (SFRA) serves as a highly sensitive diagnostic technique for identifying mechanical deformations within power transformer windings. The inherent magnetic and capacitive inter-winding couplings in transformers mean that a fault localized to a single winding can propagate detectable anomalies across the frequency responses observed at the terminals of all windings. This study systematically explores this interdependency through detailed simulations and case studies. A comprehensive six-winding equivalent circuit model of a 40 MVA, 132/11 kV power transformer, incorporating both magnetic and capacitive coupling effects is simulated to validate the underlying hypothesis. Complementing this, faults comprising an open-circuit condition and radial buckling were deliberately induced in the low-voltage (LV) winding of a 20 MVA, 66/11 kV oil-immersed transformer for experimental validation. The resultant frequency response traces reveal pronounced deviations in both LV and high-voltage (HV) signatures attributable to faults within a single phase winding. The study concludes that, due to unavoidable coupling, analyzing a single winding signature is sufficient to ensure the presence of mechanical deformation, whereas comparison of multiple signatures retains value for fault localization and severity assessment.

M. Gojiya, M. Solanki, A. Parmar et al. · 0 citations

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