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Collision Avoidance and Geofencing for Fixed-wing Aircraft with Control Barrier Functions

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arxiv 2403.02508 v3 pith:6LK2HTEJ submitted 2024-03-04 eess.SY cs.ROcs.SYmath.DS

classification eess.SYcs.ROcs.SYmath.DS
keywords aircraftcontrolavoidancecollisionfixed-winggeofencingmodelbarrier
verification ladder T0 review T1 audit T2 compute T3 formal

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Safety-critical failures often have fatal consequences in aerospace control. Control systems on aircraft, therefore, must ensure the strict satisfaction of safety constraints, preferably with formal guarantees of safe behavior. This paper establishes the safety-critical control of fixed-wing aircraft in collision avoidance and geofencing tasks. A control framework is developed wherein a run-time assurance (RTA) system modulates the nominal flight controller of the aircraft whenever necessary to prevent it from colliding with other aircraft or crossing a boundary (geofence) in space. The RTA is formulated as a safety filter using control barrier functions (CBFs) with formal guarantees of safe behavior. CBFs are constructed and compared for a nonlinear kinematic fixed-wing aircraft model. The proposed CBF-based controllers showcase the capability of safely executing simultaneous collision avoidance and geofencing, as demonstrated by simulations on the kinematic model and a high-fidelity dynamical model.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Demonstrating ViSafe: Vision-enabled Safety for High-speed Detect and Avoid

    cs.RO 2025-05 reject novelty 6.0 of 10

    A camera-only detect-and-avoid system for small drones, tested in simulation and real flights up to 144 km/h closure, but its advertised provable safety guarantee does not hold under the system's real perception limitations.

  2. Barrier Function Overrides For Non-Convex Fixed Wing Flight Control and Self-Driving Cars

    cs.RO 2025-05 conditional novelty 5.0 of 10

    Discrete-time barrier functions for fixed-wing aircraft and lane-changing cars are derived, and a fixed evasive override gives zero simulated safety violations with near-baseline RL reward.

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