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P-ISSN: 2971-785X
E-ISSN: 3141-4095

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Volume 2, Issue 1

Research Article

Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources

Published: April 28, 2025 | Volume: 2 | Issue: 1

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View Count: 23 Page No: 8-24

Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources

Peter O. Ohiero1 corresponding author email *, Kalu Kelvin Nnanna2

Published: April 28, 2025 | Issue: Volume 2, Issue 1

Page No. 8–24

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Corresponding Author: Peter O. Ohiero

Email: peterohhiero@unicross.edu.ng

1 Department of Electrical Electronics Engineering.

2 Department of Electrical Electronics Engineering.

Received: March 22, 2025 Reviewed: April 22, 2025 Accepted: April 28, 2025

Abstract

The integration of renewable energy sources into modern power systems has necessitated the development of advanced fault detection and protection mechanisms to ensure system stability and reliability. This research presents the modelling, simulation, and analysis of a fault detection and protection system for high-voltage transmission lines integrated with hybrid renewable energy sources, including wind and solar energy. The study focuses on fault detection, isolation, and relay coordination to enhance the resilience of transmission networks while mitigating power disruptions caused by various fault scenarios. The study investigated fault occurrences at different locations along the transmission line, including the sending end, receiving end, intermediate points, and renewable energy connection nodes. Faults were simulated at 25 km, 50 km, and 75 km from the source, with varying fault resistances. Key parameters such as voltage at fault points, current surges, relay operation time, sensitivity, coverage area, and system stability were evaluated. Advanced signal processing techniques, including wavelet transform analysis, were employed to assess system behaviour during fault conditions, ensuring accurate fault detection and isolation. Results indicated that the Intermediate Point Configuration provided the most balanced approach, offering comprehensive fault coverage, optimal isolation, and minimal system disruption. The impact of different fault types, including Lineto-Ground (LG), Line-to-Line-to-Ground (LLG), and Three-Phase (LLL), was analysed, revealing that three-phase faults caused the most severe disturbances, including voltage collapse and high fault currents. Relay operations were incorporated to isolate faulty sections of the network promptly, ensuring minimal disruption to the overall system. The results demonstrated that relay coordination was effective, with primary relays tripping first, followed by backup relays when necessary. The study also highlighted challenges posed by high-resistance faults and faults at distant locations, which require more sensitive detection techniques. Plots of voltage and current profiles at detection points provided a visual representation of the system's dynamic behaviour under fault conditions. The research concludes that adopting the Intermediate Point Configuration enhances the reliability of high-voltage transmission systems, particularly in networks incorporating renewable energy sources. The findings contribute to the development of improved fault d

Keywords: Frequency Stability, Inverter-Based Resources (IBRs), Particle Swarm Optimization, power systems, Rate of Change of Frequency, Renewable energy sources (RES), solar photovoltaic (PV), Virtual Inertia Control, wind turbines.

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APA
Peter O. Ohiero et al. (2025). Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources. Nigerian Journal of Engineering Research, 2(1), 8-24. https://izlik.org/JA28WS58XL
AMA
Peter O. Ohiero et al. Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources. Nigerian Journal of Engineering Research. 2025;2(1):8-24. https://izlik.org/JA28WS58XL
Chicago
Peter O. Ohiero et al. 2025. \"Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources\". Nigerian Journal of Engineering Research 2 (1): 8-24. https://izlik.org/JA28WS58XL.
IEEE
[1] Peter O. Ohiero et al., \"Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources\", Nigerian Journal of Engineering Research, vol. 2, no. 1, pp. 8-24, Apr 2025. [Online]. Available: https://izlik.org/JA28WS58XL
MLA
Peter O. Ohiero et al. \"Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources\". Nigerian Journal of Engineering Research, vol. 2, no. 1, Apr 2025, pp. 8-24, https://izlik.org/JA28WS58XL.
Vancouver
1. Peter O. Ohiero et al. Fault Detection and Protection of High Voltage Transmission Line, Integrated With Hybrid Renewable Energy Sources. Nigerian Journal of Engineering Research [Internet]. 2025 Apr. 28;2(1):8-24. Available from: https://izlik.org/JA28WS58XL

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