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A Stepped Frequency Sweeping Method for Nonlinearity Measurement of Microresonators

机译:用于微谐振器非线性测量的步进扫频方法

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摘要

In order to measure the nonlinear features of micromechanical resonators, a free damped oscillation method based on stair-stepped frequency sinusoidal pulse excitation is investigated. In the vicinity of the resonant frequency, a frequency stepping sinusoidal pulse sequence is employed as the excitation signal. A set of free vibration response signals, containing different degrees of nonlinear dynamical characteristics, are obtained. The amplitude-frequency curves of the resonator are acquired from the forced vibration signals. Together with a singular spectrum analysis algorithm, the instantaneous amplitudes and instantaneous frequencies are extracted by a Hilbert transform from the free vibration signals. The calculated Backbone curves, and frequency response function (FRF) curves are distinct and can be used to characterize the nonlinear dynamics of the resonator. Taking a Duffing system as an example, numerical simulations are carried out for free vibration response signals in cases of different signal-to-noise ratios (SNRs). The results show that this method displays better anti-noise performance than FREEVIB. A vibrating ring microgyroscope is experimentally tested. The obtained Backbone and FRF curves agree with those obtained by the traditional frequency sweeping method. As a test technique, the proposed method can also be used to for experimentally testing the dynamic characteristics of other types of micromechanical resonators.
机译:为了测量微机械谐振器的非线性特征,研究了一种基于阶梯频率正弦脉冲激励的自由阻尼振荡方法。在谐振频率附近,将频率步进正弦脉冲序列用作激励信号。获得了一组包含不同程度非线性动力学特性的自由振动响应信号。从强制振动信号中获取谐振器的振幅-频率曲线。结合奇异频谱分析算法,通过希尔伯特变换从自由振动信号中提取瞬时振幅和瞬时频率。计算出的主干曲线和频率响应函数(FRF)曲线截然不同,可用于表征谐振器的非线性动力学。以Duffing系统为例,在信噪比(SNR)不同的情况下,对自由振动响应信号进行了数值模拟。结果表明,该方法具有比FREEVIB更好的抗噪性能。振动环微陀螺仪经过实验测试。得到的主干和FRF曲线与传统扫频方法得到的曲线一致。作为一种测试技术,提出的方法还可以用于实验测试其他类型的微机械谐振器的动态特性。

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