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 transformer oil. To enable early warning and localization of inter-turn short circuits in transformer windings, this paper proposes a method based on monitoring the oil temperatures at the inlets and outlets of the transformer cooling system. First, a simulation model of a 110 kV transformer was developed, and coupled thermal–fluid simulations were performed to analyze the oil-temperature distributions in the transformer body and cooling system under normal operating conditions and representative inter-turn short-circuit conditions. Next, a simulation-based fault-localization strategy is proposed to investigate whether the spatial temperature distribution of cooling-system oil can be used to infer the vertical position; faulty phase; and, for certain fault locations, the winding side of an inter-turn fault. Finally, the temperature sensor locations were selected, and the performance of the localization strategy was evaluated. The simulation results demonstrate the feasibility of using the temperature distribution of cooling-system oil for the detection and localization of inter-turn short-circuit faults.
This work develops a circuit-based simulation framework dedicated to the study of stator inter-turn short-circuit (ITSC) defects in three-phase induction machines. The formulation relies on an internal equivalent circuit (IEC) description in which every stator coil and rotor bar is characterized individually through...
Anas Hankour, A. Yazidi, F. Betin et al.· EPJ Web of Conferences· 0 citations
Accurate prediction of temperature rise and hotspot formation is critical for the lifetime and safety of cast-resin dry-type transformers. Conventional thermal design methods typically assume constant thermophysical properties for epoxy insulation, neglecting their nonlinear temperature dependence - an oversimplificati...
Hồng Hải Phạm, Trung Son Nguyen, Duc Tung Le et al.· Journal of Military Science...· 0 citations
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· European Conference on Elect...· 0 citations
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 anom...
M. Gojiya, M. Solanki, A. Parmar et al.· ITEGAM- Journal of Engineeri...· 0 citations
Ferroresonance is a complex, nonlinear oscillatory phenomenon in power systems that poses significant risks to insulation and equipment integrity due to sustained overvoltages and overcurrents. This paper presents a detailed time-domain investigation of ferroresonant modes in a 1 kVA single-phase transformer using a co...
A.-D. Deliu, Emil Cazacu, Florențiu Deliu et al.· Revue Roumaine des Sciences...· 0 citations
Currently, the Common Information Model of the United Power System of Russia is being actively implemented in the electric power industry. Data which is received from Common Information Model is used to develop calculation models for various grid and generating equipment (including unit transformers and interconnecting...
Y. Kutumov, A. Murzin, M. A. Krunov· Vestnik IGEU· 0 citations