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A Perturbation Method for the 3D Finite Element Modeling of Electrostatically Driven MEMS

机译:静电驱动MEMS的3D有限元建模的摄动方法

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摘要

In this paper, a finite element (FE) procedure for modeling electrostatically actuated MEMS is presented. It concerns a perturbation method for computing electrostatic field distortions due to moving conductors. The computation is split in two steps. First, an unperturbed problem (in the absence of certain conductors) is solved with the conventional FE method in the complete domain. Second, a perturbation problem is solved in a reduced region with an additional conductor using the solution of the unperturbed problem as a source. When the perturbing region is close to the original source field, an iterative computation may be required. The developed procedure offers the advantage of solving sub-problems in reduced domains and consequently of benefiting from different problem-adapted meshes. This approach allows for computational efficiency by decreasing the size of the problem.
机译:在本文中,提出了一种用于建模静电驱动MEMS的有限元(FE)程序。它涉及一种用于计算由于移动的导体引起的静电场畸变的摄动方法。计算分为两个步骤。首先,在整个领域中使用常规有限元方法解决了一个不受干扰的问题(在没有某些导体的情况下)。其次,使用无扰动问题的解决方案作为源,在具有附加导体的缩小区域中解决了扰动问题。当扰动区域接近原始源字段时,可能需要进行迭代计算。所开发的过程的优点是可以解决缩小域中的子问题,因此可以从不同的问题自适应网格中受益。这种方法通过减小问题的大小来提高计算效率。

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