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Publication

K. Wahba and W. Hoenig. pc-dbCBS: Kinodynamic Motion Planning of Physically-Coupled Robot Teams. IEEE Robotics and Automation Letters, 10, (11), 11118-11125, 2025.


Abstract: Motion planning problems for physically-coupled multi-robot systems in cluttered environments are challenging due to their high dimensionality. Existing methods combining sampling-based planners with trajectory optimization produce suboptimal results and lack theoretical guarantees. We propose Physically-coupled discontinuity-bounded Conflict-Based Search (pc-dbCBS), an anytime kinodynamic motion planner that extends discontinuity-bounded CBS to rigidly-coupled systems. Our approach proposes a tri-level conflict detection and resolution framework that includes the physical coupling between the robots. Moreover, pc-dbCBS alternates iteratively between state space representations, thereby preserving probabilistic completeness and asymptotic optimality while relying only on single-robot motion primitives. Across 25 simulated and six real-world problems involving multirotors carrying a cable-suspended payload and differential-drive robots linked by rigid rods, pc-dbCBS solves up to 90 percent more instances than a state-of-the-art baseline, planning trajectories up to 60 percent faster with significantly reduced planning time.


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