首页 /研究 /Learning Robotic Manipulation of Natural Materials With Variable Properties for Construction Tasks
MANIPULATION

Learning Robotic Manipulation of Natural Materials With Variable Properties for Construction Tasks

Nicolas Kubail Kalousdian, Grzegorz Łochnicki, Valentin N. Hartmann, Samuel Leder, Ozgur S. Oguz, Achim Menges, Marc Toussaint

发表年份
2022
引用次数
15

摘要

The introduction of robotics and machine learning to architectural construction is leading to more efficient construction practices. So far, robotic construction has largely been implemented on standardized materials, conducting simple, predictable, and repetitive tasks. We present a novel mobile robotic system and corresponding learning approach that takes a step towards assembly of natural materials with anisotropic mechanical properties for more sustainable architectural construction. Through experiments both in simulation and in the real world, we demonstrate a dynamically adjusted curriculum and randomization approach for the problem of learning manipulation tasks involving materials with biological variability, namely bamboo. Using our approach, robots are able to transport bamboo bundles and reach to goal-positions during the assembly of bamboo structures.

关键词

Computer scienceRoboticsArtificial intelligenceRobotSimple (philosophy)Human–computer interactionBambooNatural (archaeology)Materials science

相关论文

查看 MANIPULATION 分类全部论文