IEEE Electrification - September 2021 - 120

By Anahita Bahrami, Mingyu Yan, Mohammad Shahidehpour,
Shikhar Pandey, Aleksandar Vukojevic, and Esa Aleksi Paaso
Mobile and Portable
De-Icing Device s
for Enhancing the
Distribution System
Resilience Against
Ice Storms
Preventive strategies for damage control.
C
LIMATE CHANGE HAS REPORTEDLY INCREASED
the frequency and intensity of extreme weather
events such as heatwaves, heavy rains, hurricanes,
tornados, flood, fire, and ice storms. Ice
storms are considered one of the most severe
natural disasters that can disrupt people's daily lives and incur
infrastructural damages. As shown in Figure 1, the accumulated
weight of ice on surfaces can easily snap trees and power
lines and damage distribution and transmission structures.
Just six to seven millimeters of ice accumulation can add hundreds
of pounds of weight per line span. Ice storms are the
leading cause of large-scale power outages in the United States
and elsewhere during the winter season. The damage caused
by ice storms can easily result in major power outages, blackouts,
and at times shut down entire metropolitan areas.
Many transmission and distribution networks remain overhead
across the United States, particularly in the Midwest and
Eastern regions, leaving these networks vulnerable to severe
Digital Object Identifier 10.1109/MELE.2021.3093639
Date of current version: 2 September 2021
120 IEEE Electrification Magazine / SEPTEMBER 2021
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IEEE Electrification - September 2021

Table of Contents for the Digital Edition of IEEE Electrification - September 2021

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IEEE Electrification - September 2021 - Cover3
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