Skip to content
Open access

Development Characteristics of Winding Interturn Insulation Partial Discharge in a Full-Scale Converter Transformer

Aug 2026 · Energies · 0 citations · 18 references

Abstract

To investigate the development characteristics of winding interturn insulation partial discharge in a full-scale converter transformer, an interturn insulation defect specimen was installed inside a ±400 kV full-scale converter transformer. A partial-discharge test was conducted under stepwise alternating-current (AC) voltage, while pulse-current, high-frequency, ultra-high-frequency, ultrasonic, sound-pressure, and vibration signals were acquired synchronously. To reduce the subjectivity of discharge-stage classification, a dimensionless discharge-development index was constructed by integrating the 95th-percentile apparent charge, discharge pulse count, and phase occupancy, and the stage-transition points were identified using piecewise-linear change-point analysis. Two change points at approximately 1.9 and 4.3 min divided the discharge process into the inception, development, and severe stages. The apparent charge increased from approximately 1.5 × 102 pC in the inception stage to the order of 103 pC in the development stage, and then rose sharply to approximately 1.6 × 105 pC in the severe stage. Meanwhile, the discharge activity changed from an intermittent low-intensity state to a continuous high-intensity state. After the test, insulation-paper ablation and carbonization, conductor exposure, and a continuous breakdown channel were observed in the defect region. These post-test observations confirm severe final damage to the interturn insulation, although the time sequence of the individual damage features could not be determined from the final morphology alone. Under the present sensor arrangement, the HF channel provided the earliest identifiable response at approximately 1.9 min, whereas the UHF and internal ultrasonic channels supplied complementary evidence during subsequent discharge development. The external ultrasonic, sound-pressure, and vibration responses were more strongly affected by propagation paths, structural coupling, sensor location, and background disturbance and were therefore treated as supplementary indicators. These findings support a staged multisensor interpretation strategy for interturn partial discharge in a full-scale converter transformer rather than a universal ranking of sensor performance.

Read PDF

Similar papers

Open access 2026

Finite-Element-Based High-Frequency Modeling of Motor Stator Windings Fed by SiC Inverters for Reflected Voltage Analysis

The emerging adoption of wide-bandgap semiconductor devices in motor-drive systems poses significant challenges to the stator winding dielectric insulation of electrical motors due to their high voltage slew rate. Such ultra-fast switching characteristics generate fast-rising voltage pulses with high $dv/dt$ , which ma...

Mohamed Y. Metwly, Abdelrahman Habib, Yiju Wang et al. · 0 citations
Open access Sep 2026

Condition assessment of medium voltage cable insulation using leakage current and phase-resolved partial discharge

Reliable operation of medium-voltage distribution networks critically depends on the integrity of cross-linked polyethylene (XLPE) insulated cables. This paper proposes a diagnostic methodology that integrates leakage current (LC) measurement with phase-resolved partial discharge (PRPD) analysis to assess cable insulat...

K. Janprom, Sittadach Morkmechai, Natchanun Prainetr et al. · 0 citations
#diffusion models Open access Sep 2026

Thermal–Fluid Characteristics of Transformer Winding Inter-Turn Short Circuits and Their Application to Fault Localization

Internal temperature monitoring is an important approach for assessing the operating condition of power transformers. Temperature-rise characteristics not only indicate faults such as inter-turn short circuits but also indirectly reflect the diffusion and transport behaviors of characteristic dissolved gases within the...

Zi-Fan Zhao, Shan Yu, Shi-Man Lin et al. · 0 citations
Open access Aug 2026

Field-Validated Induced-Voltage Testing and Power-Supply Capacity Calibration for Converter Transformer Systems Considering Parasitic Capacitance

Field voltage testing after the maintenance of large converter transformers requires high-voltage response verification while preserving the restored equipment boundary. However, conventional direct voltage application on the grid side usually requires the disconnection of high-voltage leads and auxiliary devices, whic...

Lu-Jia Wang, Ling Yang, Yongqi Zhang et al. · 0 citations
Open access Jul 2026

Research on the electrical resonance characteristics of power transformer windings

When a power transformer subjected to transient over-voltages containing different harmonic components, the frequency components of over-voltages are coupled with the inherent electrical frequency of the transformer winding, which can induce high-amplitude resonant over-voltages in the winding and thus lead to transfor...

Ya-Nan Chang, Guo-Feng Zhao, Yushan Cao et al. · 0 citations
Sep 2026

A study on the diagnosis of power transformer winding faults considering power and voltage characteristics

As a critical component of power systems, the operational status of power transformers directly affects the safety and reliability of the power grid. Addressing the challenge that traditional methods struggle to achieve online monitoring of winding deformation faults, this paper proposes a novel method for online detec...

Lai-Hong Wei · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.