A Temporal Coherent Topology Optimization Approach for Assembly Planning of Bespoke Frame Structures

Author:

Wang Ziqi1ORCID,Kennel-Maushart Florian1ORCID,Huang Yijiang1ORCID,Thomaszewski Bernhard1ORCID,Coros Stelian1ORCID

Affiliation:

1. ETH Zürich, Zurich, Switzerland

Abstract

We present a computational framework for planning the assembly sequence of bespoke frame structures. Frame structures are one of the most commonly used structural systems in modern architecture, providing resistance to gravitational and external loads. Building frame structures requires traversing through several partially built states. If the assembly sequence is planned poorly, these partial assemblies can exhibit substantial deformation due to self-weight, slowing down or jeopardizing the assembly process. Finding a good assembly sequence that minimizes intermediate deformations is an interesting yet challenging combinatorial problem that is usually solved by heuristic search algorithms. In this paper, we propose a new optimization-based approach that models sequence planning using a series of topology optimization problems. Our key insight is that enforcing temporal coherent constraints in the topology optimization can lead to sub-structures with small deformations while staying consistent with each other to form an assembly sequence. We benchmark our algorithm on a large data set and show improvements in both performance and computational time over greedy search algorithms. In addition, we demonstrate that our algorithm can be extended to handle assembly with static or dynamic supports. We further validate our approach by generating a series of results in multiple scales, including a real-world prototype with a mixed reality assistant using our computed sequence and a simulated example demonstrating a multi-robot assembly application.

Funder

European Union's Horizon 2020

Swiss National Science Foundation NCCR Dfab

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design

Reference53 articles.

1. Global optimization of truss topology with discrete bar areas—Part II: Implementation and numerical results

2. Shape optimization of a layer by layer mechanical constraint for additive manufacturing

3. A Apolinarska , Ralph Bärtschi , Reto Furrer , Fabio Gramazio , and Matthias Kohler . 2016. Mastering the sequential roof. Advances in architectural geometry ( 2016 ), 240--258. A Apolinarska, Ralph Bärtschi, Reto Furrer, Fabio Gramazio, and Matthias Kohler. 2016. Mastering the sequential roof. Advances in architectural geometry (2016), 240--258.

4. Aleksandra Anna Apolinarska. 2018. Complex timber structures from simple elements: Computational design of novel bar structures for robotic fabrication and assembly. Ph. D. Dissertation. ETH Zurich. Aleksandra Anna Apolinarska. 2018. Complex timber structures from simple elements: Computational design of novel bar structures for robotic fabrication and assembly. Ph. D. Dissertation. ETH Zurich.

5. Rahul Arora , Alec Jacobson , Timothy R. Langlois , Yijiang Huang , Caitlin Mueller , Wojciech Matusik , Ariel Shamir , Karan Singh , and David I.W. Levin . 2019. Volumetric Michell Trusses for Parametric Design & Fabrication . In Proceedings of the 3rd ACM Symposium on Computation Fabrication ( Pittsburgh, PA, USA) (SCF '19). ACM, New York, NY, USA, 13 pages. Rahul Arora, Alec Jacobson, Timothy R. Langlois, Yijiang Huang, Caitlin Mueller, Wojciech Matusik, Ariel Shamir, Karan Singh, and David I.W. Levin. 2019. Volumetric Michell Trusses for Parametric Design & Fabrication. In Proceedings of the 3rd ACM Symposium on Computation Fabrication (Pittsburgh, PA, USA) (SCF '19). ACM, New York, NY, USA, 13 pages.

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