Humanoid Robot LOLA - Vision Guided Autonomous Multi-Contact Locomotion @AppliedMechanicsTUM
Humanoid Robot LOLA - Vision Guided Autonomous Multi-Contact Locomotion  @AppliedMechanicsTUM
Uploaded January 2022 | Updated September 2026, 7 minutes ago
In this video we demonstrate fully autonomous multi-contact locomotion for our humanoid robot LOLA. In contrast to our previous multi-contact videos where contact points for the feet and hands had to be specified manually by the user, this time all contacts are autonomously planned by the robot itself based on the perceived environment. The only input by the user is the desired final goal position (a horizontal position and rotation around the vertical axis). The robot then automatically computes a feasible contact sequence (if possible) and connects the discrete poses with kinematically and dynamically feasible trajectories while considering multi-contact effects (external forces applied at the hands of the robot).

Through this experiments we demonstrate the coupling of LOLA's new computer vision (Chair for Computer Aided Medical Procedures & Augmented Reality, TUM) and walking pattern generation (Chair of Applied Mechanics, TUM) systems. All algorithms run onboard an in real-time. The scene is not known to the robot (it has to detect it on its own).

For more information on LOLA please see our project's website:
mec.ed.tum.de/en/am/research/current-projects/robotics/humanoid-robot-lola

This work is supported by the German Research Foundation (DFG, project number 407378162).
Humanoid Robot LOLA - Vision Guided Autonomous Multi-Contact LocomotionSmooth Real-Time Walking-Pattern Generation for Humanoid Robot LOLAThe humanoid robot LOLA walks over uneven terrain without using visual informationEfficient Zero-Clamped Cubic Splines Based on Analytical GradientsReal-Time Predictive Kinematic Evaluation and Optimization for Biped RobotsCROPS Manipulator (Generation 1) - Predictive Online Inverse KinematicsALE-Beam Model: Reference/Shifting Motion for a CVTThe Application of Neural Networks for Fidelity Assessment of Real-Time Hybrid Substructuring (RTHS)Humanoid Robot LOLA walks over an unexpected platformJoint project advances prosthetic evaluationAdaptive Motion Planning with Tactile Feedback on the CROPS platformHumanoid Robot LOLA at the Hannover Fair 2010
TUM Chair of Applied Mechanics |

Humanoid Robot LOLA - Vision Guided Autonomous Multi-Contact Locomotion

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