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Angularly parameterized macromodel extraction for unconstrained microstructures

机译:无约束微结构的角度参数化宏模型提取

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摘要

In this paper, we present an angularly parameterized model order reduction (APMOR) technique for macromodel extraction of unconstrained microstructures by combining a new, iterated IRS (improved reduced system) method with coordinate transformation theory. The extracted macromodels are encapsulated in the MAST hardware description language and can be exported automatically as components which can be inserted directly into an analog circuit simulator for dynamics simulation. An in-plane micro accelerometer including four variable cross-section folded beams is used to demonstrate the proposed macromodeling method. The folded beams are treated as unconstrained microstructures, and numerical simulation results in a SABER simulator show that the macromodels can dramatically reduce the computation cost while capturing the device behavior faithfully. Compared with FEM results, the relative error is less than 1.4%, while the computational efficiency improves about 22 times. Once the macromodel of one of the folded beams is obtained, the macromodels of all other folded beams can be obtained easily by setting the corresponding angle parameters. With the help of an APMOR technique and the existing model library which is developed in our previous work, the hybrid system-level model of the in-plane micro accelerometer can be constructed rapidly, and the scale factor of the accelerometer is simulated. Compared with experimental results, the relative error is about 8.16%.
机译:在本文中,我们提出了一种角度参数化模型降阶(APMOR)技术,该技术通过将新的迭代IRS(改进的简化系统)方法与坐标变换理论相结合来提取无约束微结构的宏模型。提取的宏模型封装在MAST硬件描述语言中,并且可以作为组件自动导出,可以将其直接插入模拟电路仿真器中进行动力学仿真。包含四个可变截面折叠梁的平面内微加速度计用于演示所提出的宏建模方法。折叠后的梁被视为不受约束的微结构,SABER仿真器中的数值模拟结果表明,该宏模型可以在忠实地捕获设备行为的同时显着降低计算成本。与FEM结果相比,相对误差小于1.4%,而计算效率提高了约22倍。一旦获得折叠梁之一的宏模型,就可以通过设置相应的角度参数轻松获得所有其他折叠梁的宏模型。借助APMOR技术和在我们先前的工作中开发的现有模型库,可以快速构建面内微型加速度计的混合系统级模型,并且可以模拟加速度计的比例因子。与实验结果相比,相对误差约为8.16%。

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