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SIMULATION MODEL FOR MICROMECHANICAL ANGULAR RATE SENSOR

机译:微机械角速度传感器的仿真模型

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摘要

A simulation model for an angular rate sensor, a gyroscope, is presented. The device is based on a micromechanical dual torsional mass system which is actuated electrostatically and sensed capacitively. Model equations describing a dynamic, non-linear system are first presented and then realized as an electrical equivalent circuit. The vibrational modes of the system ate modelled with coupled resonator circuits. The electrostatic and Coriolis forces as well as variable capacitances in the small air gaps are modelled with non-linear controlled current sources. External forces, torques and electrical actuation can act as inputs to the device. The model presented allows numerical sensor simulations concurrently with the interfacing electronics in the time and frequency domains. The model is verified by comparing its simulation results to measured frequency responses and capacitance-voltage characteristics. [References: 16]
机译:提出了一种用于角速度传感器陀螺仪的仿真模型。该设备基于微机械双扭转质量系统,该系统通过静电驱动并通过电容感应。首先介绍描述动态非线性系统的模型方程,然后将其实现为等效电路。系统的振动模式是用耦合的谐振器电路建模的。利用非线性控制电流源对小气隙中的静电力和科里奥利力以及可变电容进行建模。外力,扭矩和电驱动可作为设备的输入。提出的模型允许在时域和频域中与接口电子设备同时进行数值传感器仿真。通过将其仿真结果与测得的频率响应和电容-电压特性进行比较来验证该模型。 [参考:16]

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