Sep 2026· International Journal of Applied Power Engineering (IJAPE)· Vol 15, pp. 1327· 0 citations· 24 references
TL;DR
The modeling and implementation of a dual-mode emulator for minimum reactance distance protection of overhead transmission lines, operating in both real-time and offline modes is presented, demonstrating reliable fault detection and consistent fault-distance estimation.
Abstract
Advances in power system protection and the increasing complexity of electrical networks have created a growing need for flexible and cost-effective platforms for testing and validating protection algorithms. However, academic laboratories still face a lack of accessible experimental platforms allowing researchers to implement and evaluate new protection strategies under realistic conditions. This gap is becoming increasingly significant with the emergence of artificial intelligence and data-driven techniques, which require flexible environments for development, testing, and experimental validation. To address this limitation, this work presents the modeling and implementation of a dual-mode emulator for minimum reactance distance protection of overhead transmission lines, operating in both real-time and offline modes. The proposed system acquires and processes voltage and current signals to determine the minimum line reactance used for fault detection and distance estimation. The developed algorithm is evaluated through simulated fault scenarios under different operating conditions. Results demonstrate reliable fault detection and consistent fault-distance estimation. The dual-mode architecture enables both offline analysis of recorded signals and real-time algorithm evaluation. The proposed emulator therefore provides a practical, low-cost academic platform for research, training, and experimental validation of conventional and emerging protection strategies.
This article addresses the development, implementation, and quantitative verification of the Spectrum diagnostic system, designed for comprehensive monitoring and control of operating modes in electrical distribution networks. The research methodology integrates theoretical power-flow modelling with advanced experiment...
I. Khomenko, R. Lozhkin, Andrii Shkrebela et al.· Informatyka Automatyka Pomia...· 0 citations
The system stability is necessary to improve and to control the fault current due to increase the demand for electrical power and the expansion of Extra High Voltage (EHV) transmission systems. This paper presents a comparative analysis of two FACTS devices such as STATCOM and SSSC, to reduce the fault current and to i...
Tin Moe Khaing, Soe Soe Ei Aung, Devasis Pradhan· Scientia. Technology, Scienc...· 0 citations
With the increasing adoption of bipolar high-voltage direct-current (HVDC) transmission lines for wind farm integration, the development of fast, accurate, and communication-independent protection schemes has become a critical technical requirement. This paper proposes a comprehensive protection algorithm within an int...
Mahyar Abasi, Vahid Davatgaran, Morteza Azizi· PLoS ONE· 0 citations
Unintentional islanding is defined as the condition in which a section of the power grid continues to be energized by distributed generators after disconnection from the utility grid, for example, due to a fault. This situation remains a significant protection challenge in microgrids with high penetration of inverter-b...
Elijah Gbenga Osunkentan, R. D. dos Santos, Adedeji Adeyemi· Discover Electronics· 0 citations
Protection of electrical power systems is the major issue in power industry and for the protection of these electric power systems, current distance relays are widely applied due to their inherent simplicity, excellent sensitivity on internal faults and high stability on external faults. This work represented the probl...
A. Rajak, Preeti Rajput, M. Choubey· International journal of res...· 0 citations
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...