Electronic devices and power systems are vulnerable to transient overvoltage caused by lightning strikes, switching operations, and system faults. In DC circuit breaker applications, metal oxide surge arresters (MOSAs), composed of multiple metal oxide varistors (MOVs), play a critical role in absorbing fault energy and limiting overvoltage during interruption processes. However, MOVs may exhibit non-uniform V-I characteristics due to manufacturing tolerances, differences in cooling performance, and progressive aging under repeated surge current and overvoltage stresses. Such non-uniformity can lead to current imbalance within a MOSA bank, resulting in uneven energy absorption and degradation of overall overvoltage protection performance. In this paper, the impact of current imbalance in a MOSA bank is investigated using a PSCAD/EMTDC-based impulse current test-bed model. A virtual MOV impulse current test environment is implemented to analyze current sharing behavior under different MOV degradation conditions. The degradation level of individual MOV units is represented by controlled variations in their V-I characteristics to reproduce non-uniform degradation scenarios. The resulting current imbalance is quantitatively evaluated in terms of transient interruption voltage (TIV) and absorbed energy. The simulation results indicate that progressive MOV degradation exacerbates current imbalance and may degrade the overvoltage protection capability of the MOSA bank.
With the growth of emerging data centers and electric vehicles, DC power distribution and hybrid microgrids are attracting growing attention. Due to the lack of a natural zero-crossing point in DC current, reliable DC fault protection is critical. This paper introduces a transient-minimized fault protection scheme util...
Lightning strikes are a primary factor contributing to temporary overvoltages in electrical distribution networks, especially in Medium Voltage Overhead Lines (MVOL). Such overvoltages can cause insulation breakdown, significantly impairing the reliability of the system. The purpose of this research is to evaluate the...
Muhamad Ulinnuha, Bryan Denov, U. Khayam· 2026 7th International Confe...· 0 citations
Precise electrical cable representation is crucial for examining surge transient overvoltages in medium voltage (MV) motor systems. These brief overvoltages, initiated by swift switching actions, may induce substantial insulation strain, equipment degradation, and potential system failures. This study explores the infl...
A. Basha, N. Lindsay· International Journal of App...· 0 citations
Busbar protection is a cornerstone of industrial power system reliability, as failures at switchgear can propagate rapidly and extend restoration times. The Taiwan"303 blackout"in 2022, initiated by a short-circuit fault and aggravated by CT supervision lockout, illustrates the severe consequences of inadequate designs...
Karl M. H. Lai, Yun-He Hou, Kwunhang Wong· arXiv.org· 0 citations
This paper presents a comprehensive assessment of the performance of superconducting fault current limiters (SFCLs), emphasizing their capability for rapid and effective mitigation of severe fault currents. With the increasing global demand for electrical power, the occurrence of system faults has become more frequent,...
Yogesh Shivaji Pawar, Sandip Rahane, Amita Panchamrao Thakare et al.· Bulletin of Electrical Engin...· 0 citations
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