Uncertainty-Aware Automatic Flight Terrain Avoidance System

Aircraft-terrain collision avoidance is a cornerstone of aviation safety, critical to mitigating catastrophic risks posed by unintended ground contact during flight operations. Generally, existing systems rely on simplified models, deterministic assumptions, or a single predefined maneuver. These approaches often neglect dynamic uncertainties, pilot decision-making variability, and real-time computational constraints, limiting their adaptability in complex operational environments. This paper introduces an uncertainty-aware framework for terrain collision prevention that integrates high-fidelity 6-degree-of-freedom flight dynamics with probabilistic maneuver planning. The proposed system employs polynomial chaos expansion to propagate uncertainties, enabling real-time trajectory prediction and collision risk assessment. Combining uncertainty quantification, high-fidelity dynamics, and probabilistic collision detection, this work advances the robustness of autonomous terrain avoidance systems, particularly in high-stress or dynamically complex environments.

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Publication Details

Journal
Journal of Guidance Control and Dynamics
Published
2026-10-01
DOI
https://doi.org/10.2514/1.g009849
Primary Topic
Air Traffic Management and Optimization
Type
article
Field-Weighted Citation Impact
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article

Uncertainty-Aware Automatic Flight Terrain Avoidance System

Ahmet T. Cetin, Murad Abu-Khalaf, Uğur Zengin, Emre Koyuncu et al.
Journal of Guidance Control and Dynamics
Air Traffic Management and Optimization
article

Uncertainty-Aware Automatic Flight Terrain Avoidance System

Ahmet T. Cetin, Murad Abu-Khalaf, Uğur Zengin, Emre Koyuncu, Fatih Erol, Mustafa Demir
article en

Abstract

Aircraft-terrain collision avoidance is a cornerstone of aviation safety, critical to mitigating catastrophic risks posed by unintended ground contact during flight operations. Generally, existing systems rely on simplified models, deterministic assumptions, or a single predefined maneuver. These approaches often neglect dynamic uncertainties, pilot decision-making variability, and real-time computational constraints, limiting their adaptability in complex operational environments. This paper introduces an uncertainty-aware framework for terrain collision prevention that integrates high-fidelity 6-degree-of-freedom flight dynamics with probabilistic maneuver planning. The proposed system employs polynomial chaos expansion to propagate uncertainties, enabling real-time trajectory prediction and collision risk assessment. Combining uncertainty quantification, high-fidelity dynamics, and probabilistic collision detection, this work advances the robustness of autonomous terrain avoidance systems, particularly in high-stress or dynamically complex environments.

Journal of Guidance Control and Dynamics
Turkish Aerospace Industries (Turkey) (TR), Istanbul Technical University (TR)
Peace, Justice and strong institutions
Openalex Percentile: Top 8%
Air Traffic Management and Optimization
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Uncertainty-Aware Automatic Flight Terrain Avoidance System — Ahmet T. Cetin, Murad Abu-Khalaf, et al. · Journal of Guidance Control and Dynamics (2026) | TGRS Research Map | TGRS