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Sensitivity analysis and adaptive multi-point multi-moment model order reduction in MEMS design

机译:MEMS设计中的灵敏度分析和自适应多点多矩模型降阶

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We present a model order reduction algorithm for linear time-invariant descriptor systems of arbitrary derivative order that incorporates sensitivity analysis for network parameters in respect to design parameters. It is based on implicit moment matching via rational Krylov subspace methods with adaptive choice of expansion points and number of moments based on an error indicator. Additionally, we demonstrate how parametric reduced order models can be obtained at nearly no extra costs, such that parameter studies are extremely accelerated. The finite element model of a yaw rate sensor MEMS device has been chosen as a numerical example, but our method is also applicable to systems arising in modeling and simulation of electromagnetics, electrical circuits, machine tools, heat conduction and other phenomena.
机译:我们提出了一种针对任意导数阶的线性时不变描述符系统的模型阶约减少算法,该算法结合了针对网络参数相对于设计参数的敏感性分析。它基于通过有理Krylov子空间方法进行的隐式矩匹配,并基于错误指示符自适应选择扩展点和矩数。此外,我们演示了如何在几乎不增加成本的情况下获得参数化降阶模型,从而极大地加速了参数研究。偏航角速度传感器MEMS器件的有限元模型已被选为数值示例,但我们的方法也适用于在电磁,电路,机床,热传导和其他现象的建模和仿真中出现的系统。

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