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FT-WBC: Learning Fault-Tolerant Whole-Body Control for Legged Loco-Manipulation

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Legged manipulators combine the mobility of legged platforms with the manipulation capability of robotic arms. However, arm-induced Center-of-Mass shifts and dynamic disturbances make the system more prone to instability under actuator failures, potentially leading to falls, task failures, or safety risks. Existing fault-tolerant control methods mainly focus on locomotion alone, leaving the coupled problem of whole-body stability and arm reachability in fault-tolerant loco-manipulation largely unaddressed. To bridge this gap, we propose FT-WBC, a fault-tolerant loco-manipulation framework for robust whole-body control of legged manipulators under actuator failures. FT-WBC adopts a decoupled upper- and lower-body policy architecture and introduces two key modules: a Fault Estimator (FE) and a Posture Adaptation Module (PAM). The FE predicts faulty joints from lower-body proprioceptive histories, while the PAM uses this fault information to adapt the base posture plan generated by the arm policy, converting potentially unstable posture requests into safe and executable base posture commands. Through this fault-aware posture adaptation mechanism, FT-WBC synthesizes compensatory gaits under actuator failures and preserves as much arm workspace as possible while maintaining whole-body stability. Simulation and real-world experiments show that FT-WBC significantly improves survival rate and workspace under weakening or locked failures, and transfers zero-shot to a real legged manipulator in the real world.

Yudong Zhong, Pengfei Mai, Sikai Guo, Jiahang Cao, Zhihai Bi, Qiuyue Liu, Ziyan Feng, Jinni Zhou, Jun Ma• 2026

Related benchmarks

TaskDatasetResultRank
Locomotion and end-effector pose trackingSimulation Environment Partial Weakening k_tau=0.1
Survival Rate96.5
26
Locomotion and end-effector pose trackingSimulation Environment Complete Weakening k_tau=0.0
Survival Rate89.8
26
Locomotion and Workspace TrackingSimulation Locked Actuator Faults FL Calf v1.0
Survival Rate84.1
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults RR Calf v1.0
Survival Rate85.3
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults FR Thigh v1.0
Survival Rate91.2
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults RL Thigh v1.0
Survival Rate93.1
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults FL Hip v1.0
Survival Rate96.2
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults RR Hip v1.0
Survival Rate96.5
4
Locomotion and Workspace TrackingSimulation Locked Actuator Faults Average v1.0
Survival Rate91.1
4
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