An Investigation of the Factors Affecting the Transition of Lightning Surges through Underground Cables and Sub-Transmission Substations: A case study
Shahab Aref, Alireza Sedighi Anaraki

TL;DR
This study uses EMTP simulations to analyze how factors like grounding resistance and surge arresters influence lightning surge transmission through underground cables to protect sub-transmission substations.
Contribution
It provides new insights into the impact of grounding resistance and protective devices on lightning surge propagation in underground cable systems.
Findings
Grounding resistance significantly affects surge susceptibility.
Surge arresters improve protection effectiveness.
Simulation results guide better substation protection strategies.
Abstract
Lightning is a natural phenomenon that takes place all around the world. The enormous amount of energy released by lightning is extremely ruinous, so some suitable protection schemes are required for power systems to minimize its destructive effects. Given that the lightning surge passes through the transmission line, the destruction caused by lightning would not always happen at the strike point. Hence, the failure could take place at a point far from the striking point. This paper investigates factors affecting the transition of lightning surges through underground cables. These cables are utilized to supply a sub-transmission substation whose repeated cable failures have imposed enormous costs to regional electric distribution companies. To obtain reliable results, the highly capable software of EMTP was employed to calculate transient phenomena. In addition, various scenarios were…
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Taxonomy
TopicsLightning and Electromagnetic Phenomena · Fire effects on ecosystems · Thermal Analysis in Power Transmission
