Examining Decision-Making in Air Traffic Control: Enhancing Transparency and Decision Support Through Machine Learning, Explanation, and Visualization: A Case Study
Christophe Hurter, Augustin Degas, Arnaud Guibert, Maelan Poyer, Nicolas Durand, Alexandre Veyrie, Ana Ferreira, Nicola Cavagnetto, Stefano Bonelli, Mobyen Ahmed, Waleed Jmoona, Shaibal Barua, Shahina Begum, Giulia Cartocci, Gianluca Di Flumeri, Gianluca Borghini, Fabio Babiloni, Pietro Aricó
2024
Abstract
Artificial Intelligence (AI) has recently made significant advancements and is now pervasive across various application domains. This holds true for Air Transportation as well, where AI is increasingly involved in decision-making processes. While these algorithms are designed to assist users in their daily tasks, they still face challenges related to acceptance and trustworthiness. Users often harbor doubts about the decisions proposed by AI, and in some cases, they may even oppose them. This is primarily because AI-generated decisions are often opaque, non-intuitive, and incompatible with human reasoning. Moreover, when AI is deployed in safety-critical contexts like Air Traffic Management (ATM), the individual decisions generated by AI models must be highly reliable for human operators. Understanding the behavior of the model and providing explanations for its results are essential requirements in every life-critical domain. In this scope, this project aimed to enhance transparency and explainability in AI algorithms within the Air Traffic Management domain. This article presents the results of the project’s validation conducted for a Conflict Detection and Resolution task involving 21 air traffic controllers (10 experts and 11 students) in En-Route position (i.e. hight altitude flight management). Through a controlled study incorporating three levels of explanation, we offer initial insights into the impact of providing additional explanations alongside a conflict resolution algorithm to improve decision-making. At a high level, our findings indicate that providing explanations is not always necessary, and our project sheds light on potential research directions for education and training purposes.
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in Harvard Style
Hurter C., Degas A., Guibert A., Poyer M., Durand N., Veyrie A., Ferreira A., Cavagnetto N., Bonelli S., Ahmed M., Jmoona W., Barua S., Begum S., Cartocci G., Di Flumeri G., Borghini G., Babiloni F. and Aricó P. (2024). Examining Decision-Making in Air Traffic Control: Enhancing Transparency and Decision Support Through Machine Learning, Explanation, and Visualization: A Case Study. In Proceedings of the 16th International Conference on Agents and Artificial Intelligence - Volume 2: ICAART; ISBN 978-989-758-680-4, SciTePress, pages 622-634. DOI: 10.5220/0012471900003636
in Bibtex Style
@conference{icaart24,
author={Christophe Hurter and Augustin Degas and Arnaud Guibert and Maelan Poyer and Nicolas Durand and Alexandre Veyrie and Ana Ferreira and Nicola Cavagnetto and Stefano Bonelli and Mobyen Ahmed and Waleed Jmoona and Shaibal Barua and Shahina Begum and Giulia Cartocci and Gianluca Di Flumeri and Gianluca Borghini and Fabio Babiloni and Pietro Aricó},
title={Examining Decision-Making in Air Traffic Control: Enhancing Transparency and Decision Support Through Machine Learning, Explanation, and Visualization: A Case Study},
booktitle={Proceedings of the 16th International Conference on Agents and Artificial Intelligence - Volume 2: ICAART},
year={2024},
pages={622-634},
publisher={SciTePress},
organization={INSTICC},
doi={10.5220/0012471900003636},
isbn={978-989-758-680-4},
}
in EndNote Style
TY - CONF
JO - Proceedings of the 16th International Conference on Agents and Artificial Intelligence - Volume 2: ICAART
TI - Examining Decision-Making in Air Traffic Control: Enhancing Transparency and Decision Support Through Machine Learning, Explanation, and Visualization: A Case Study
SN - 978-989-758-680-4
AU - Hurter C.
AU - Degas A.
AU - Guibert A.
AU - Poyer M.
AU - Durand N.
AU - Veyrie A.
AU - Ferreira A.
AU - Cavagnetto N.
AU - Bonelli S.
AU - Ahmed M.
AU - Jmoona W.
AU - Barua S.
AU - Begum S.
AU - Cartocci G.
AU - Di Flumeri G.
AU - Borghini G.
AU - Babiloni F.
AU - Aricó P.
PY - 2024
SP - 622
EP - 634
DO - 10.5220/0012471900003636
PB - SciTePress