A Tutorial on Resilience in Smart Grids
Armin Stocker, Hermann de Meer

TL;DR
This paper reviews the concept of resilience in smart grids, emphasizing the importance of maintaining continuous power supply amid disturbances, and explores traditional and novel approaches, including communication and renewable integration, to enhance grid resilience.
Contribution
It provides a comprehensive overview of resilience in power systems, highlighting new strategies involving ICT and renewable sources for improved robustness and recovery.
Findings
Resilience is crucial for critical infrastructure continuity.
Communication and renewable integration are key to modern resilience strategies.
New approaches enhance grid recovery and fault protection.
Abstract
A key quality of any kind of system is its ability to deliver its respective service correctly. Often the unavailability of commercial systems may lead to lost revenue, which are minor compared to what may be at stake when critical infrastructures fail. A failure to deliver critical services, such as clean water or electricity may have dire consequences that endanger human lives and may even halt or break other infrastructures. The services provided by critical infrastructures need to be supplied continuously even when faced with re-configurations, outside disturbances and systemic changes. A system is called resilient if it fulfils this property. From the many critical infrastructures that exist, power systems may be the most important ones, because they are supplying the required electricity for other critical infrastructures. At the same time, a power system itself may be exposed to…
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