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Application of the level set method for the visual representation of continuous cellular automata oriented to anisotropic wet etching

机译:水平集方法在面向各向异性湿法刻蚀的连续细胞自动机的视觉表示中的应用

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摘要

Atomistic models are a very valuable simulation tool in the field of material science. Among them are the continuous cellular automata (CCA), which can simulate accurately the process of chemical etching used in micro-electro-mechanical-systems (MEMS) micromachining. Due to the CCA intrinsic atomistic nature, simulation results are obtained in the form of a cloud of points, so data visualization has been usually problematic. When using these models as a part of a computer aided design tool, good data visualization is very important. In this paper, a minimum energy model implemented with the level set (LS) method for improving the visual representation of simulated MEMS is presented. Additionally, the sparse field method has been applied to reduce the high computational cost of the original LS. Finally, some reconstructed surfaces with completely different topologies are presented, proving the effectiveness of our implementation and the fact that it is capable of producing any real surface, flat and smooth ones.
机译:原子模型是材料科学领域中非常有价值的仿真工具。其中包括连续细胞自动机(CCA),它可以精确地模拟微机电系统(MEMS)微加工中使用的化学蚀刻过程。由于CCA具有固有的原子性,因此以点云的形式获得仿真结果,因此数据可视化通常存在问题。当将这些模型用作计算机辅助设计工具的一部分时,良好的数据可视化非常重要。本文提出了一种用能级集(LS)方法实现的最小能量模型,用于改善模拟MEMS的视觉表示。此外,稀疏场方法已被应用来减少原始LS的高计算成本。最后,介绍了一些具有完全不同拓扑结构的重构表面,证明了我们实施的有效性以及它能够生成任何真实表面(平坦和光滑的表面)的事实。

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