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Distributed Motion Planning with Safety Guarantees for Self-Reconfiguring Robotic Boats

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arxiv 2607.20352 v1 pith:D5LTUSSQ submitted 2026-07-22 cs.RO

Distributed Motion Planning with Safety Guarantees for Self-Reconfiguring Robotic Boats

classification cs.RO
keywords distributedsafetyagentscbfscontroldesiredframeworkguarantees
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Aquatic self-reconfigurable robots must assemble into desired shapes while ensuring safe interactions among multiple agents. This paper proposes a hybrid framework that combines distributed Model Predictive Control (MPC) with Control Barrier Functions (CBFs) for multi-agent shape formation and reconfiguration. Given a desired shape and target assignment, a distributed MPC scheme, solved via the Alternating Direction Method of Multipliers (ADMM), computes coordinated trajectories through local optimization and information exchange. To ensure safety in real time, distributed CBF-based filters are applied to enforce inter-agent collision avoidance. The proposed approach leverages the predictive capabilities of MPC to mitigate local minima, while CBFs provide formal safety guarantees despite the nonconvexity of the underlying optimization problem. Simulation results with up to 25 agents and experimental validation with four physical robots demonstrate the effectiveness and scalability of the framework.

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