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  4. Multi-Objective Quantum Power System Redispatch
 
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2025
Conference Paper
Title

Multi-Objective Quantum Power System Redispatch

Abstract
The rising energy production costs and the increasing reliance on volatile renewable sources have driven the need for more efficient power system redispatch strategies. In this work, we re-interpret the redispatch problem as a multi-objective combinatorial optimization task within the Quadratic Unconstrained Binary Optimization (QUBO) framework, suitable for adiabatic quantum computing. Our contributions include a novel normalized unbalanced penalty method that integrates inequality constraints via a quadratic Taylor expansion and an α-Expansion algorithm that allows us to address largescale redispatch instances and to integrate temporal adjacent state switching constraints directly into the algorithm. Our experiments are conducted on open data of the German power system. Our results, obtained via numerical simulation and from an actual D-Wave Advantage quantum annealer, validate the viability of our formulation and demonstrate that our algorithm scales to large problem instances.
Author(s)
Lee, Loong Kuan
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Gerlach, Thore Thassilo
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Knaute, Johannes
PricewaterhouseCoopers AG
Gerhardt, Florian
PricewaterhouseCoopers AG
Völker, Patrick
PricewaterhouseCoopers AG
Maras, Tomislav
PricewaterhouseCoopers AG
Dotterweich, Alexander
PricewaterhouseCoopers AG
Piatkowski, Nico  
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Mainwork
IEEE 12th International Conference on Data Science and Advanced Analytics, DSAA 2025  
Conference
International Conference on Data Science and Advanced Analytics 2025  
DOI
10.1109/DSAA65442.2025.11247977
Language
English
Fraunhofer-Institut für Intelligente Analyse- und Informationssysteme IAIS  
Keyword(s)
  • Constraint Encoding

  • Energy Network

  • Grid Management

  • Multi-Objective Optimization

  • Quantum Optimization

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