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Robust Trajectory Generation and Control for Quadrotor Motion Planning With Field-of-View Control Barrier Certification

Articolo
Data di Pubblicazione:
2026
Citazione:
Robust Trajectory Generation and Control for Quadrotor Motion Planning With Field-of-View Control Barrier Certification / Pan, L.; Catellani, M.; Sabattini, L.; Ayanian, N.. - In: IEEE ROBOTICS AND AUTOMATION LETTERS. - ISSN 2377-3766. - 11:2(2026), pp. 1682-1689. [10.1109/LRA.2025.3630888]
Abstract:
Many approaches to multi-robot coordination are susceptible to failure due to communication loss and uncertainty in estimation. We present a real-time communication-free distributed navigation algorithm certified by control barrier functions, that models and controls the onboard sensing behavior to keep neighbors in the limited field of view for position estimation. The approach is robust to temporary tracking loss and directly synthesizes control to stabilize visual contact through control Lyapunov-barrier functions. The main contributions of this letter are a continuous-time robust trajectory generation and control method certified by control barrier functions for distributed multi-robot systems and a discrete optimization procedure, namely, MPC-CBF, to approximate the certified controller. In addition, we propose a linear surrogate of high-order control barrier function constraints and use sequential quadratic programming to solve MPC-CBF efficiently.
Tipologia CRIS:
Articolo su rivista
Keywords:
constrained motion planning; Distributed multi-robot systems; integrated planning and control
Elenco autori:
Pan, L.; Catellani, M.; Sabattini, L.; Ayanian, N.
Autori di Ateneo:
CATELLANI MATTIA
SABATTINI Lorenzo
Link alla scheda completa:
https://iris.unimore.it/handle/11380/1395608
Pubblicato in:
IEEE ROBOTICS AND AUTOMATION LETTERS
Journal
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