Abstract:
We investigate the modeling of inverse dynamics without prior kinematic information for holonomic rigid-body robots. Despite success in compensating robot dynamics and fr...Show MoreMetadata
Abstract:
We investigate the modeling of inverse dynamics without prior kinematic information for holonomic rigid-body robots. Despite success in compensating robot dynamics and friction, general inverse dynamics models are nontrivial. Rigid-body models are restrictive or inefficient; learning-based models are generalizable yet require large training data. The structured kernels address the dilemma by embedding the robot dynamics in reproducing kernel Hilbert space. The proposed kernels autonomously converge to rigid-body models but require fewer samples; with a semi-parametric framework that incorporates additional parametric basis for friction, the structured kernels can efficiently model general rigid-body robots. We tested the proposed scheme in simulations and experiments; the models that consider the structure of function space are more accurate.
Published in: IEEE Transactions on Cybernetics ( Volume: 46, Issue: 7, July 2016)
Funding Agency:
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Hilbert Space ,
- Robot Manipulator ,
- Inverse Dynamics ,
- Reproducing Kernel Hilbert Space ,
- Reproducing Kernel ,
- Training Data ,
- Prior Information ,
- Space Of Functions ,
- Learning-based Models ,
- Robot Dynamics ,
- Kinematic Information ,
- Rigid Body Model ,
- Evaluation Of Function ,
- Perturbation Theory ,
- Kernel Function ,
- Tracking Error ,
- Inverse Model ,
- Radial Basis Function Kernel ,
- Curse Of Dimensionality ,
- Kinematic Parameters ,
- Rigid Body Dynamics ,
- Iterative Learning Control ,
- Hypothesis Space ,
- Finite-dimensional Space ,
- Inertia Matrix ,
- Inverse Mapping ,
- Time-domain Data ,
- Coulomb Friction ,
- Regularized Least Squares ,
- Standard Cross-validation
- Author Keywords
- Author Free Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Hilbert Space ,
- Robot Manipulator ,
- Inverse Dynamics ,
- Reproducing Kernel Hilbert Space ,
- Reproducing Kernel ,
- Training Data ,
- Prior Information ,
- Space Of Functions ,
- Learning-based Models ,
- Robot Dynamics ,
- Kinematic Information ,
- Rigid Body Model ,
- Evaluation Of Function ,
- Perturbation Theory ,
- Kernel Function ,
- Tracking Error ,
- Inverse Model ,
- Radial Basis Function Kernel ,
- Curse Of Dimensionality ,
- Kinematic Parameters ,
- Rigid Body Dynamics ,
- Iterative Learning Control ,
- Hypothesis Space ,
- Finite-dimensional Space ,
- Inertia Matrix ,
- Inverse Mapping ,
- Time-domain Data ,
- Coulomb Friction ,
- Regularized Least Squares ,
- Standard Cross-validation
- Author Keywords
- Author Free Keywords