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Declarative Problem Solving in UAM Strategic Deconfliction

Authors

Do you know Gioacchino Sterlicchio?You can claim authorship or link another user.Do you know Angelo Oddi?You can claim authorship or link another user.Do you know Riccardo Rasconi?You can claim authorship or link another user.Do you know Francesca Alessandra Lisi?You can claim authorship or link another user.

Abstract

The growing demand for Urban Air Mobility (UAM) introduces significant challenges in airspace management, particularly within densely populated metropolitan regions. As the number of aerial vehicles-such as drones, air taxis, and helicopters-continues to rise, so does the risk of mid-air collisions and conflicts with existing air traffic and obstacles. Ensuring safe and efficient UAM operations requires robust strategic deconfliction mechanisms. We propose an Answer Set Programming (ASP) based approach for strategic deconfliction, focusing on time synchronization and route optimization for conflict-free flight plans. The solution is benchmarked against Constraint Programming (CP), emphasizing scalability and resource use. Results show that ASP offers faster execution and better scalability for small to medium cases, while CP maintains stable memory but degrades with complexity.

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Publication notes

Author note
In Proceedings ICLP 2026, arXiv:2607.17707
Journal
EPTCS 450, 2026, pp. 256-269
DOI
10.4204/EPTCS.450.20