English

Phasor Noise for Dehomogenisation in 2D Multiscale Topology Optimisation

Computational Engineering, Finance, and Science 2023-10-10 v1 Graphics

Abstract

This paper presents an alternative approach to dehomogenisation of elastic Rank-N laminate structures based on the computer graphics discipline of phasor noise. The proposed methodology offers an improvement of existing methods, where high-quality single-scale designs can be obtained efficiently without the utilisation of any least-squares problem or pre-trained models. By utilising a continuous and periodic representation of the translation at each intermediate step, appropriate length-scale and thicknesses can be obtained. Numerical tests verifies the performance of the proposed methodology compared to state-of-the-art alternatives, and the dehomogenised designs achieve structural performance within a few percentages of the optimised homogenised solution. The nature of the phasor-based dehomogenisation is inherently mesh-independent and highly parallelisable, allowing for further efficient implementations and future extensions to 3D problems on unstructured meshes.

Keywords

Cite

@article{arxiv.2310.04881,
  title  = {Phasor Noise for Dehomogenisation in 2D Multiscale Topology Optimisation},
  author = {Rebekka V. Woldseth and J. Andreas Bærentzen and Ole Sigmund},
  journal= {arXiv preprint arXiv:2310.04881},
  year   = {2023}
}

Comments

In proceedings for publication in Computer Methods in Applied Mechanics and Engineering

R2 v1 2026-06-28T12:43:30.291Z