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System Level Modeling of Microsystems Using Order Reduction Methods

机译:使用降阶方法对微系统进行系统级建模

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摘要

In the development of microsystems, Finite Element Method (FEM) simulators are used to investigate the behavior of system components with high accuracy. Generally, FEM simulations are time consuming. System-level models of all components are needed to allow a fast but sufficiently exact investigation of the system behavior to simulate entire microsystems. Typically, microsystems consist of nonelectrical components and electronic circuits. Providing models for electronic components and languages to describe the behavior of nonelectrical subsystems, simulators like Eldo, Saber, and VHDL-AMS simulators become more and more popular in the development of microsystems. For simple structures such as mechanical beams, models of microsystem components can be derived from analytical descriptions. Another possibility to consider more complex structures is to use FEM descriptions to generate models for system simulation. Some FEM simulators like ANSYS allow one to access the numerical values of the system matrices. They are established based on the description of geometry and material data. Usually, these system matrices are very large (10000 up to 100000 system variables or more). For system simulation, models with about 10 up to 100 variables are often required. Therefore, methods for order reduction are applied to derive smaller system matrices. An improvement of an order reduction method based on a projection method is introduced in the paper. Using the reduced systems, behavioral models in languages like MAST, HDL-A or VHDL-AMS can be generated automatically. The method described here was applied successfully to simulate mechanical microsystem components on system level.
机译:在微系统的开发中,有限元方法(FEM)仿真器用于高精度地研究系统组件的行为。通常,FEM仿真非常耗时。需要所有组件的系统级模型,以便对系统行为进行快速但足够准确的调查,以模拟整个微系统。通常,微系统由非电气组件和电子电路组成。提供用于描述非电气子系统行为的电子组件和语言模型,诸如Eldo,Sabre和VHDL-AMS模拟器之类的模拟器在微系统开发中变得越来越受欢迎。对于诸如机械梁的简单结构,可以从分析描述中得出微系统组件的模型。考虑更复杂的结构的另一种可能性是使用FEM描述来生成用于系统仿真的模型。一些FEM仿真器(例如ANSYS)允许访问系统矩阵的数值。它们是根据几何和材料数据的描述建立的。通常,这些系统矩阵非常大(10000至100000个系统变量或更多)。对于系统仿真,通常需要具有约10至100个变量的模型。因此,应用了降阶方法来推导较小的系统矩阵。本文介绍了一种基于投影方法的降阶方法的改进。使用简化的系统,可以自动生成MAST,HDL-A或VHDL-AMS等语言的行为模型。此处描述的方法已成功应用于在系统级别上模拟机械微系统组件。

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