首页 /研究 /Combining Analytical Modeling and Learning to Simplify Dexterous Manipulation With Adaptive Robot Hands
MANIPULATION

Combining Analytical Modeling and Learning to Simplify Dexterous Manipulation With Adaptive Robot Hands

Minas Liarokapis, Aaron M. Dollar

发表年份
2018
引用次数
21

摘要

In this paper, we focus on the formulation of a hybrid methodology that combines analytical models, constrained optimization schemes, and machine learning techniques to simplify the execution of dexterous, in-hand manipulation tasks with adaptive robot hands. More precisely, the constrained optimization scheme is used to describe the kinematics of adaptive hands during the grasping and manipulation processes, unsupervised learning (clustering) is used to group together similar manipulation strategies, dimensionality reduction is used to either extract a set of representative motion primitives (for the identified groups of manipulation strategies) or to solve the manipulation problem in a low-d space and finally an automated experimental setup is used for unsupervised, automated collection of large data sets. We also assess the capabilities of the derived manipulation models and primitives for both model and everyday life objects, and we analyze the resulting manipulation ranges of motion (e.g., object perturbations achieved during the dexterous, in-hand manipulation). We show that the proposed methods facilitate the execution of fingertip-based, within-hand manipulation tasks while requiring minimal sensory information and control effort, and we demonstrate this experimentally on a range of adaptive hands. Finally, we introduce DexRep, an online repository for dexterous manipulation models that facilitate the execution of complex tasks with adaptive robot hands.

关键词

Computer scienceArtificial intelligenceKinematicsRobotSet (abstract data type)Cluster analysisFocus (optics)Dimensionality reductionMachine learning

相关论文

查看 MANIPULATION 分类全部论文