Locally weighted regression (LWR) was created as a nonparametric method that can approximate a wide range of functions, is computationally efficient, and can learn continually from very large amounts of incrementally collected data. As an interesting feature, LWR can regress on non-stationary functions, a beneficial property, for instance, in control problems. However, it does not provide a proper generative model for function values, and existing algorithms have a variety of manual tuning parameters that strongly influence bias, variance and learning speed of the results. Gaussian (process) regression, on the other hand, does provide a generative model with rather black-box automatic parameter tuning, but it has higher computational cost, ...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Locally weighted regression (LWR) was created as a nonparametric method that can approximate a wide ...
High performance and compliant robot control require accurate dynamics models which cannot be obtain...
High performance and compliant robot control require accurate dynamics models which cannot be obtain...
For many applications in robotics, accurate dynamics models are essential. However, in some applicat...
For many applications in robotics, accurate dynamics models are essential. However, in some applicat...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dy-namics model for mo...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Locally weighted regression (LWR) was created as a nonparametric method that can approximate a wide ...
High performance and compliant robot control require accurate dynamics models which cannot be obtain...
High performance and compliant robot control require accurate dynamics models which cannot be obtain...
For many applications in robotics, accurate dynamics models are essential. However, in some applicat...
For many applications in robotics, accurate dynamics models are essential. However, in some applicat...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dynamics model for mod...
Learning in real-time applications, e.g., online approximation of the inverse dy-namics model for mo...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Accurate models of the robot dynamics allow the design of significantly more precise, energy-efficie...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...
Precise models of robot inverse dynamics allow the design of significantly more accurate, energy-eff...