Francesco Cadini, Luca Lomazzi
Cascading failures are a major threat to interconnected systems, such as electrical power transmission networks. Typically, approaches proposed for devising optimized control strategies are demonstrated with reference to a few test systems of reference (IEEE systems). However, this limits the robustness of the proposed strategies with respect to different power grid structures. Recently, this issue has been addressed by considering synthetic networks randomly generated for mimicking power transmission grids’ characteristics. These networks can be used for investigating the vulnerability of power networks to cascading failures. In this work, we propose to apply a recent algorithm for sampling random power grid topologies with realistic electrical parameters and further extend it to the random allocation of generation and load. Integration with a realistic cascade simulation tool, then, allows us to perform thorough statistical analyses of power grids with respect to their cascading failure behavior, thus offering a powerful tool for identifying the strengths and weaknesses of different grid classes. New metrics for ranking the control and mitigation effort requirements of individual cascade scenarios and/or of grid configurations are defined and computed. Finally, genetic algorithms are used to identify strategies to improve the robustness of existing power networks.
@article{012a1de2-3035-4d46-83b8-13450d80a58c,
title={Electronics 2024, 13, 943. https://doi.org/10.3390/electronics13050943},
author={Francesco Cadini and Luca Lomazzi},
year={2024},
language={English}
}TY - JOUR TI - Electronics 2024, 13, 943. https://doi.org/10.3390/electronics13050943 AU - Francesco Cadini AU - Luca Lomazzi PY - 2024 LA - English ER -
Ntombenhle Mazibuko, Kayode T. Akindeji
South Africa is currently experiencing an energy crisis because of a mismatch between energy supply and demand. Increasing energy demand necessitates
Edwin Pagayona, Jaime Honra
The effective transport of high-viscosity fluids in wastewater treatment systems is heavily contingent upon the operational efficiency of centrifugal
Di Zhu, Zilong Hu
Two-stage double-suction centrifugal pumps have both a large flow and high head. However, due to the complexity of their flow passage components, effi
Anna Chernobrova, Oleksandr Moloshnyi
This article presents results from research whose purpose is to determine the impact of two main factors on the operational efficiency of a double-ent
Chengshuo Wu, Jun Yang
This paper describes the related research work in the field of fluid-induced vibration of centrifugal pumps conducted by many researchers. In recent y
Wasim Zaman, Zahoor Ahmad
This paper presents a novel framework for classifying ongoing conditions in centrifugal pumps based on signal processing and deep learning techniques.