You can also read: Energy and Mines and the Pucmm promote training to strengthen journalistic knowledge of the mining sector
The study results suggest strengthening the interruption data management infrastructure, especially considering that 36% of the total events are due to unknown causes. Also, the development of modeling capabilities, scenario simulation, and optimization in resource allocation, to more accurately identify the critical zones, circuits, and components of the system. This analytical capacity constitutes a condition for prioritizing investments and designing effective mitigation and adaptation strategies in interdependent sectors. Researchers explained that this recent event made visible what normally remains invisible: electrical grids are the backbone of modern society and electricity is deeply integrated into every activity and economic process, to the point of becoming an essential input for contemporary life.In this context, the university makes its research infrastructure available to the national energy sector to contribute to this challenge. The university has the first real-time simulation and microgrid laboratory in the country. The laboratory is a platform that allows recreating severe failure scenarios and evaluating recovery strategies before their implementation in the field, advanced simulation and planning capabilities that can help make decisions based on technical evidence and prospective analysis.“A disaster of catastrophic scale is not required to demonstrate the fragility of critical infrastructures nor the cascading effects that can affect the economy, public health, water supply, telecommunications, and emergency services,” they explained.
