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Python inverse kinematics based on Pinocchiolipm_walking_controller
Walking controller for humanoid robots based on inverted pendulum trackingpymanoid
Humanoid robotics prototyping environment based on OpenRAVEpypoman
Python module for polyhedral geometryqpmpc
Model predictive control in Python based on quadratic programminglpsolvers
Linear programming solvers in Python with a unified APIsmart-grid-scheduling
Energy-consumption scheduling algorithms for smart electrical gridsanalytical-wrench-cone
Analytical formula of the wrench friction cone for surface contactsfip-walkgen
3D walking pattern generation by NMPC of the floating-base pendulum modelloop-rate-limiters
Simple loop rate limiters in Pythonmulti-contact-zmp
ZMP support areas for multi-contact stability under frictional contactspalimpsest
Fast serializable C++ dictionariescapture-walkgen
Capturability-based walking pattern generation over uneven terrainscapture_walking_controller
Capturability-based controller for walking with variable-heightpyfme
Symbolic (analytical) polyhedron projection by Fourier-Motzkin elimination using SymPymeshcat-shapes
Useful shapes to decorate MeshCat scenestopp-mpc
Model Predictive Control with automatic timings based on Time-Optimal Path Parameterization (TOPP)motion-planning
Course on motion planningvhip_walking_controller
Walking controller based on variable-height inverted pendulum trackingvhip-balance
Balancing a variable-height inverted pendulummpacklog
Log dictionaries to MessagePack files in C++ and Pythonopenrave_models
Robot models for OpenRAVEaiorate
Loop frequency regulation for asynciobazel_pinocchio
Bazel repository rules to build Pinocchio targetsmc-lmpc-walkgen
Multi-contact walking pattern generation over rough terrains by linearized MPCfoxplot
Plot time-series data from line-delimited JSON.avp-rrt
Kinodynamic planning in the configuration space by Admissible Velocity Propagationmanipulation_markers
ROS package used in the GUI of Team Hydra while preparing for the DARPA Robotics ChallengeLove Open Source and this site? Check out how you can help us