Impact of Cyber Failures on Operation and Adequacy of Multi-Microgrid Distribution Systems
Mostafa Barani, Vijay Venu Vadlamudi, Hossein Farzin

TL;DR
This paper develops a framework using Monte Carlo Simulation to assess how cyber failures impact the operation and adequacy of multi-microgrid distribution systems, introducing new indices for better evaluation.
Contribution
It proposes a novel adequacy assessment framework incorporating cyber failure effects and introduces new indices for system performance evaluation.
Findings
Cyber failures significantly affect system adequacy.
The framework effectively quantifies impacts using EENS, IbGC, and SbER indices.
Case study demonstrates the framework's applicability and insights.
Abstract
Large-scale successful integration of microgeneration, together with active loads, energy storage devices, and energy scheduling strategies, requires the extensive adoption of advanced information and communication technologies (ICTs) at the distribution network level; this brings so-called Cyber-Physical Multi-MicroGrid (CPMMG) systems into the picture. However, as such ICTs are not failure-free, their integration affects the system's operation and adequacy. To quantify how cyber failures influence a CPMMG system, this study proposes an adequacy framework based on sequential Monte Carlo Simulation (MCS). In the proposed framework, the typical structure of a CPMMG is exemplified, and the consequences of various cyber failures in this system are explained. Possible operation modes -- normal, island, joint, and shutdown modes -- are then explained and modeled. Finally, the adequacy index…
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Taxonomy
TopicsOptimal Power Flow Distribution · Microgrid Control and Optimization · Smart Grid Energy Management
