Publisher DOI: 10.1051/matecconf/202642203005
Title: A genetic algorithm approach to optimal sensor placement in liquid hydrogen fuel tanks
Language: English
Authors: Winter, Adrian  
Alijev, Ali 
Kochan, Kay  
Editor: Rodrigues, Helder 
Silva, Emílio 
Araújo, Aurélio 
Guedes, José M. 
Keywords: Optimal Sensor Placement; Genetic Algorithm; Liquid Hydrogen; Fuel Systems; Computational Geometry; Numeric Optimization
Issue Date: 9-Sep-2026
Publisher: EDP Science
Book title: 7th International Conference on Engineering Optimization (EngOpt 2026) : Lisboa, Portugal, September 16-18, 2026
Journal or Series Name: MATEC web of conferences 
Volume: 422
Project: Innovative Technologien zur effizienten und genauen Messung des LH2-Tankinhalts in Flugzeugen 
Conference: International Conference on Engineering Optimization 2026 
Abstract: 
Genetic Algorithms (GAs) offer a robust framework for optimization when vast configuration spaces render analytical methods computationally infeasible. This research employs GAs to determine optimal fill-level sensor configurations for liquid hydrogen (LH2) aircraft tanks, addressing a gap in current aerospace instrumentation design. A pivotal element of this approach is the design of the fitness function, which quantifies system mass and sensor sensitivity across the full range of fill levels and operational flight envelopes (pitch and roll). To evaluate candidate configurations, the fluid volume content of the tilted tank and the intersection of the sensors with the fuel surface are computed. The results demonstrate that GAs can evolve novel, high-performance, and non-intuitive sensor layouts that fulfill operational requirements. However, the findings also underscore that integrating domain-specific constraints into the fitness operators is essential to ensure computationally efficient convergence toward physically viable solutions.
URI: https://hdl.handle.net/20.500.12738/20185
ISSN: 2261-236X
Review status: This version was peer reviewed (peer review)
Institute: Fakultät Luftfahrt- und Fahrzeugsysteme 
Forschungs- und Transferzentrum Future Mobility and Acoustics 
Type: Chapter/Article (Proceedings)
Funded by: Bundesministerium für Wirtschaft und Energie 
Appears in Collections:Publications without full text

Show full item record

Google ScholarTM

Check

HAW Katalog

Check

Add Files to Item

Note about this record


This item is licensed under a Creative Commons License Creative Commons