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Electrical grid resilience framework with uncertainty

delete2020-12-01
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PRE
AI
P
Phylicia Cicilio *
L
L. Swartz
B
Bjorn Vaagensmith
C
Craig Rieger
J
Jake Gentle
T
Timothy McJunkin
E
Eduardo Cotilla‐Sanchez
DOI:10.1016/j.epsr.2020.106801delete
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Abstract

Abstract

En 中文
Resilience in our electrical grid is imperative to the well being of society after events such as natural disasters or cyber attacks. To justify the development of resilience improvements in the grid, metrics are needed to quantify the improvement and cost benefit. These resilience metrics need to consider the inherent uncertainty in the grid, which arise from elements such as variable load and generation. This paper presents a method to include uncertainty in the proposed resilience framework. The resilience framework is demonstrated on a 2000-bus synthetic grid with a transient contingency simulated as a hurricane type event with numerous line outages. Varying amounts of distributed energy resources (DERs) at 0%, 10%, 20%, and 50% of load amount are included in the system and assessed for their system resilience impact and cost-benefit with and without uncertainty evaluated using Monte Carlo simulation.
Keywords:
Power systems
Power system dynamics
Resilience
Uncertainty
Adaptive capacity
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Journal

Electric Power Systems Research cover
Electric Power Systems Research
IF:
4.2
Papers:
1.1W
Citations:
2.2W

Organization

I
Idaho National Laboratory
Scholars:
1.6K
Papers: 1.0K
Citations: 2.8K
U
united states department of energy (doe)
Scholars:
11.3W
Papers: 9.6W
Citations: 246