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A Hybrid System-Level Modeling and Simulation Methodology for Structurally Complex Microelectromechanical Systems

机译:结构复杂的微机电系统的混合系统级建模和仿真方法

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We present a hybrid system-level modeling and simulation methodology by combining numerical macromodels with parameterized lumped-element behavioral models for structurally complex microelectromechanical systems (MEMS). We decompose the MEMS into several functional components. For those components with complex geometry and boundary conditions, we model them using numerical macromodels, whereas for those with simple geometry, we model them using parameterized lumped-element behavioral models. Both models are represented by the same syntax and similar equation forms to ensure the compatibility. Afterward, the hybrid numerical macromodels and parameterized behavioral models are inserted into the same simulator and then interconnected to each other according to the original topography of the MEMS for system-level simulation. As one of the key technologies of the proposed methodology, macromodeling has been improved in two aspects. First, macromodeling for the component with dynamic boundary condition is achieved by combining modal analysis with a novel iterated improved reduced system method. Second, angular parameterization for the components with the same geometry but different initial orientation is achieved by the matrix coordinate transformation. A $z$-axis micromachined gyroscope is used to demonstrate the proposed methodology. Simulation results show that the method can efficiently support the design for structurally complex MEMS. $hfill$[2010-0007]
机译:我们通过将数值宏模型与参数化集总元件行为模型相结合,为结构复杂的微机电系统(MEMS)提供了一种混合的系统级建模和仿真方法。我们将MEMS分解为几个功能组件。对于具有复杂几何形状和边界条件的那些组件,我们使用数值宏模型对其进行建模,而对于具有简单几何形状的那些组件,我们将使用参数化集总元素行为模型对其进行建模。两种模型均以相同的语法和相似的方程式表示,以确保兼容性。然后,将混合数值宏模型和参数化的行为模型插入同一仿真器,然后根据MEMS的原始拓扑相互互连以进行系统级仿真。作为所提出方法的关键技术之一,宏模型在两个方面得到了改进。首先,通过将模态分析与新颖的迭代改进的简化系统方法结合起来,对具有动态边界条件的组件进行宏建模。其次,通过矩阵坐标变换实现了具有相同几何形状但初始方向不同的组件的角度参数化。使用z轴微机械陀螺仪演示了所提出的方法。仿真结果表明,该方法可以有效地支持结构复杂的MEMS设计。 $ hfill $ [2010-0007]

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