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Author

Sagar Krishna

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Conference Jul 2026

Whole Body Compliance Control for Mobile Manipulators

Mobile manipulators performing sustained contact tasks must simultaneously regulate contact forces and track trajectories beyond the manipulator’s reachable workspace. Existing QP-based whole-body controllers generally lack explicit force regulation, while force-capable approaches often assume a fixed base or decouple the base and arm. We propose a Whole-Body Compliance Controller (WBCC) that addresses these limitations in a unified quadratic programming framework by modeling the mobile base and manipulator as a single kinematic chain. Force regulation is incorporated as an asymmetrically weighted soft task, where force tracking is prioritized over trajectory tracking when constraints prevent exact satisfaction of both. A Cartesian compliance formulation further improves robustness during contact and near singular configurations.The proposed controller operates without modification on both holonomic and nonholonomic platforms. Simulation results demonstrate force RMSEs of 9.29 N and 8.60 N, and trajectory RMSEs of 1.35 mm and 2.79 mm for holonomic and nonholonomic systems, respectively. Real-time feasibility is achieved with QP solve times of approximately 2.3 ms at 100 Hz. These results demonstrate a practical and robust framework for contact-rich mobile manipulation tasks, including surface finishing, inspection, and large-scale assembly.

Phakin Boonchanachai, Cai-Xia Cai, K. Thamrongaphichartkul et al. · 0 citations