Extended level set method: a multiphase representation with perfect symmetric property, and its application to multi material topology optimization
Masaki Noda, Yuki Noguchi, Takayuki Yamada

TL;DR
This paper introduces an extended level set method for multi material topology optimization that simplifies sensitivity analysis and reduces initial configuration dependence, validated through 2D and 3D numerical examples.
Contribution
The paper proposes a novel extended level set approach with a symmetric property for multi material design, improving robustness and ease of optimization.
Findings
Effective in multi material topology optimization
Reduces dependence on initial configurations
Validated with 2D and 3D numerical examples
Abstract
This paper provides an extended level set (X-LS) based topology optimiza- tion method for multi material design. In the proposed method, each zero level set of a level set function {\phi}ij represents the boundary between materials i and j. Each increase or decrease of {\phi}ij corresponds to a material change between the two materials. This approach reduces the dependence of the initial configuration in the optimization calculation and simplifies the sensitivity analysis. First, the topology optimization problem is formulated in the X-LS representation. Next, the reaction-diffusion equation that updates the level set function is introduced, and an optimization algorithm that solves the equilibrium equations and the reaction-diffusion equation using the fi- nite element method is constructed. Finally, the validity and utility of the proposed topology optimization method are confirmed…
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