首页> 外文期刊>Journal of Computational and Nonlinear Dynamics >Enhancing the Weak Signal With Arbitrary High-Frequency by Vibrational Resonance in Fractional-Order Duffing Oscillators
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Enhancing the Weak Signal With Arbitrary High-Frequency by Vibrational Resonance in Fractional-Order Duffing Oscillators

机译:通过分数级Duffing振荡器中的振动共振增强具有任意高频的弱信号

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摘要

When the traditional vibrational resonance (VR) occurs in a nonlinear system, a weak character signal is enhanced by an appropriate high-frequency auxiliary signal. Here, for the harmonic character signal case, the frequency of the character signal is usually smaller than 1 rad/s. The frequency of the auxiliary signal is dozens of times of the frequency of the character signal. Moreover, in the real world, the characteristic information is usually indicated by a weak signal with a frequency in the range from several to thousands rad/s. For this case, the weak high-frequency signal cannot be enhanced by the traditional mechanism of VR, and as such, the application of VR in the engineering field could be restricted. In this work, by introducing a scale transformation, we transform high-frequency excitations in the original system to low-frequency excitations in a rescaled system. Then, we make VR to occur at the low frequency in the rescaled system, as usual. Meanwhile, the VR also occurs at the frequency of the character signal in the original system. As a result, the weak character signal with arbitrary high-frequency can be enhanced. To make the rescaled system in a general form, the VR is investigated in fractional-order Duffing oscillators. The form of the potential function, the fractional order, and the reduction scale are important factors for the strength of VR.
机译:当传统的振动谐振(VR)发生在非线性系统中时,通过适当的高频辅助信号增强弱字符信号。这里,对于谐波字符信号情况,字符信号的频率通常小于1 rad / s。辅助信号的频率是字符信号频率的几十次。此外,在现实世界中,特征信息通常由弱信号指示,其频率在几到数千rad / s的范围内。对于这种情况,通过VR的传统机制不能增强弱高频信号,因此,可以限制VR在工程领域中的应用。在这项工作中,通过引入缩放变换,我们将原始系统中的高频激发转换为重新定义系统中的低频激发。然后,我们像往常一样在重新定义的系统中以低频状态进行VR。同时,VR还发生在原始系统中的字符信号的频率下。结果,可以增强具有任意高频的弱字符信号。为了使重新定义的系统以一般形式进行,VR在分数级Duffing振荡器中进行研究。潜在功能,分数顺序和减少规模的形式是VR强度的重要因素。

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