Energies, Vol. 18, Pages 6053: Study on Failure of 10 kV Primary Devices and Their Impact on Distribution Network Induced by HEMP

Energies, Vol. 18, Pages 6053: Study on Failure of 10 kV Primary Devices and Their Impact on Distribution Network Induced by HEMP

Energies doi: 10.3390/en18226053

Authors:
Haiyan Xie
Yong Li
Dingmao Zhang
Gengfeng Li
Hailiang Qiao
Yu Liu
Chao Yang
Shaohua Huang
Taijiao Du

Defending power systems against a high-altitude electromagnetic pulse (HEMP) requires accurately assessing its impact on critical equipment. This paper presents a method integrating theoretical analysis, deep neural networks (DNNs), critical thresholds for primary equipment, and the minimum path method to quantitatively assess the failure probabilities of critical equipment and their effects on a 10 kV distribution network. The analysis of HEMP impact on power distribution networks can be completed within several tens of seconds. Results indicate that the failure probabilities of unreinforced transformers and insulators can reach up to 96% and 12.7%, respectively. These failures can cause typical 10 kV overhead line distribution networks to experience power outages over distances exceeding a thousand kilometers. The maximum power interruption probability reaches 41.6%, with a maximum load loss ratio of 48.6%, even with the proportion of unreinforced transformers of 5%. The spatial distribution of power interruption probability and load loss ratio exhibits an “eye” shape. The results also identify insulator failure as the primary cause of system failures, and corresponding protective suggestions are provided.

More From Author

Energies, Vol. 18, Pages 6054: Proactive Energy Management for Fuel Cell Hybrid Vehicles: An Expert-Guided Slope-Aware Deep Reinforcement Learning Approach

Energies, Vol. 18, Pages 6052: AI-Assisted Adaptive Sliding Mode Control for Pseudo-Resonance Suppression in Dynamic Capacitive Wireless Charging Systems

Leave a Reply

Your email address will not be published. Required fields are marked *