arXiv:2510.13686cs.RO2025-10被引 5

用模块化积木和机器人,实现米级大结构的低成本自动建造

Hierarchical Discrete Lattice Assembly: An Approach for the Digital Fabrication of Scalable Macroscale Structures

  • 将大结构分层拆解为厘米级可打印积木,逐级组装
  • 通过数字孪生系统实现实时规划与人工干预,提升装配效率
  • 适合需要快速搭建大型结构的工程、建筑领域应用

尽管桌面级数字制造已相当成熟,但大规模结构制造系统仍普遍复杂、昂贵且不可靠。本文提出一种基于简单机器人与互锁格子块的可扩展宏结构数字制造方法。先将目标结构体素化,生成定制化格子结构;再将体素分组为更大互联块,利用标准数字制造工艺在小尺度生产复杂几何形状。这些尺寸约数十厘米的模块块,由移动式相对机器人搬运并放置,构建米级结构。为支持大规模装配,引入实时数字孪生仿真工具,实现目标结构的全局规划及用户交互设计。为提升装配效率,设计新型模块化装配机器人,支持分层体素处理。通过多个米级物体的体素化、分块、路径规划与机器人制造验证了该系统可行性。

原文摘要 · Abstract (English)

Although digital fabrication processes at the desktop scale have become proficient and prolific, systems aimed at producing larger-scale structures are still typically complex, expensive, and unreliable. In this work, we present an approach for the fabrication of scalable macroscale structures using simple robots and interlocking lattice building blocks. A target structure is first voxelized so that it can be populated with an architected lattice. These voxels are then grouped into larger interconnected blocks, which are produced using standard digital fabrication processes, leveraging their capability to produce highly complex geometries at a small scale. These blocks, on the size scale of tens of centimeters, are then fed to mobile relative robots that are able to traverse over the structure and place new blocks to form structures on the meter scale. To facilitate the assembly of large structures, we introduce a live digital twin simulation tool for controlling and coordinating assembly robots that enables both global planning for a target structure and live user design, interaction, or intervention. To improve assembly throughput, we introduce a new modular assembly robot, designed for hierarchical voxel handling. We validate this system by demonstrating the voxelization, hierarchical blocking, path planning, and robotic fabrication of a set of meter-scale objects.

数字制造机器人大尺度结构模块化

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