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  4. Multi-Time-Step Voltage Control in Transmission Grids Using Genetic Algorithms
 
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2025
Conference Paper
Title

Multi-Time-Step Voltage Control in Transmission Grids Using Genetic Algorithms

Abstract
Traditional approaches for transmission system voltage control (TSVC) rely heavily on manual action or mathematical optimization methods, which face challenges when addressing the combinatorial nature of TSVC at large scales. In this paper, we explore the potential of genetic algorithms (GAs) as a meta-heuristic approach for optimizing voltage control over multiple time steps. Our study evaluates GAs on three different grid models, including a real transmission grid, and benchmarks their performance against brute-force and greedy algorithms where feasible. Furthermore, we incorporate topological control actions into the optimization process, filling a gap in existing research. The results indicate that GAs offer a flexible approach to TSVC, effectively handling discrete control decisions over multiple time steps. Their scalability and adaptability make them a promising alternative to classical methods. This study highlights the potential of GAs for automated voltage management in increasingly complex power systems.
Author(s)
Lytaev, Pawel
Universität Kassel
Scheidler, Alexander  
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Mende, Denis
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Dietrich, Carsten
50Hertz Transmission GmbH
Braun, Martin
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Mainwork
IEEE Kiel PowerTech 2025  
Conference
PowerTech Conference 2025  
DOI
10.1109/PowerTech59965.2025.11180718
Language
English
Fraunhofer-Institut für Energiewirtschaft und Energiesystemtechnik IEE  
Keyword(s)
  • genetic algorithms

  • transmission grid operation

  • voltage control

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