Tracking the Unseen and Unaware: Deciphering Controllers' Detection Failures to Warnings Through Eye-Tracking Metrics
The integration of digital towers in air traffic control (ATC) intensifies visual complexity of controllers, increasing the risk of detection failure (DF) to warnings and compromising airspace safety. The inherent variability in human situational awareness and behaviors further complicates the diffe...
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| Vydané v: | International journal of human-computer interaction Ročník 41; číslo 19; s. 11895 - 11914 |
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| Hlavní autori: | , , |
| Médium: | Journal Article |
| Jazyk: | English |
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Norwood
Taylor & Francis
02.10.2025
Lawrence Erlbaum Associates, Inc |
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| ISSN: | 1044-7318, 1532-7590, 1044-7318 |
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| Abstract | The integration of digital towers in air traffic control (ATC) intensifies visual complexity of controllers, increasing the risk of detection failure (DF) to warnings and compromising airspace safety. The inherent variability in human situational awareness and behaviors further complicates the differentiation and recognition of various DFs. This study deciphers DF by categorizing it into types based on Endsley's situation awareness theory, identifying specific causes and key indicators. A four-phase framework-DF classification, DF induction experiment, gaze dynamics analytics, and DF-type recognition-was applied to gaze data from 26 subjects. Results revealed distinct gaze patterns for non-perception, unaware perception, and aware perception of warnings, with continuous warnings weakening operators' awareness but enhancing foresight of warning implications. A random forest model achieved 80% precision in DF-type recognition, offering empirical support for real-time DF recognition and targeted interventions to improve visual warning detection and human-computer interaction in aviation safety. |
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| AbstractList | The integration of digital towers in air traffic control (ATC) intensifies visual complexity of controllers, increasing the risk of detection failure (DF) to warnings and compromising airspace safety. The inherent variability in human situational awareness and behaviors further complicates the differentiation and recognition of various DFs. This study deciphers DF by categorizing it into types based on Endsley's situation awareness theory, identifying specific causes and key indicators. A four-phase framework-DF classification, DF induction experiment, gaze dynamics analytics, and DF-type recognition-was applied to gaze data from 26 subjects. Results revealed distinct gaze patterns for non-perception, unaware perception, and aware perception of warnings, with continuous warnings weakening operators' awareness but enhancing foresight of warning implications. A random forest model achieved 80% precision in DF-type recognition, offering empirical support for real-time DF recognition and targeted interventions to improve visual warning detection and human-computer interaction in aviation safety. |
| Author | Li, Fan Li, Zhimin Lyu, Mengtao |
| Author_xml | – sequence: 1 givenname: Zhimin orcidid: 0000-0001-7730-1619 surname: Li fullname: Li, Zhimin organization: Department of Aeronautical and Aviation Engineering, The Hong Kong Polytechnic University – sequence: 2 givenname: Fan orcidid: 0000-0002-3929-6625 surname: Li fullname: Li, Fan organization: Department of Aeronautical and Aviation Engineering, The Hong Kong Polytechnic University – sequence: 3 givenname: Mengtao orcidid: 0000-0003-1505-1970 surname: Lyu fullname: Lyu, Mengtao organization: Department of Aeronautical and Aviation Engineering, The Hong Kong Polytechnic University |
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| SubjectTerms | Acknowledgment Air safety Air traffic control Aviation Classification Consciousness detection failures recognition Differentiation Eye fixation Eye movements Eye tracking Human technology relationship Human-computer interaction Induction Operators Perception Perceptions Real time Recognition Safety Situational awareness Towers Tracking Warning detection warning frequency Warnings |
| Title | Tracking the Unseen and Unaware: Deciphering Controllers' Detection Failures to Warnings Through Eye-Tracking Metrics |
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