基于Duffing与Van der Pol强耦合系统的随机共振研究及轴承故障诊断

张刚,吴瑕

振动与冲击 ›› 2020, Vol. 39 ›› Issue (19) : 266-276.

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振动与冲击 ›› 2020, Vol. 39 ›› Issue (19) : 266-276.
论文

基于Duffing与Van der Pol强耦合系统的随机共振研究及轴承故障诊断

  • 张刚,吴瑕
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Stochastic resonance and bearing fault diagnosis basedon a Duffing-Van der Pol strongly coupled system

  • ZHANG Gang, WU Xia
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摘要

微弱信号检测是一种重要的技术,已经被广泛用于许多领域。与众多微弱信号处理方法不同的是,随机共振(SR)可以利用噪声实现对特征信号的检测。Van der Pol振子具有丰富的动力学性质,被广泛运用在混沌检测中。基于此,本文将Duffing与Van der Pol振子进行线性耦合,并添加微分项作为耦合系统的反馈以加强耦合强度,构建一种Duffing与Van der Pol强耦合系统,实验发现,该系统具有丰富的SR现象,且通过广义时间尺度变换,可以实现任意特征频率下的微弱信号检测。实验显示,强耦合系统比一般耦合系统具有更好的稳定性;在三值噪声背景下,该系统的输出平均信噪比增益(MSNRI)随着三值噪声状态值的变化呈现不同形式的对称分布;在被控系统中,随着阻尼系数的逐渐增强,输出响应将变得逐渐平滑;另外,在控制系统中,当阻尼系数很小时,系统输出将会出现二次共振现象,随着阻尼系数的增大,次级共振峰将逐渐减小直至消失,一级共振峰将逐渐增强,这是阱间共振完全取代了阱内,阱间联合共振的缘故。最后,借助遗传算法(GA)自适应参数寻优,与传统双稳以及耦合Duffing系统对比发现,所提系统具有更高的输出MSNRI。经测试,该系统对实际轴承故障信号也具有良好的检测效果,并且与传统双稳系统相比能更显著的消除边频信号干扰。

Abstract

Weak signal detection is an important technique, it is widely applied in various fields. Being different from other weak signal processing methods, stochastic resonance (SR) can utilize noise to detect characteristic signals.Van der Pol oscillator has rich dynamic properties,and is extensively applied in chaotic detection. Here, Duffing oscillator and Van der Pol oscillator were linearly coupled, and a differential term was added as the feedback of the coupled system for enhancing coupling degree to construct a Duffing-Van der Pol strongly coupled system. It was found with experiments that the system has rich SR phenomena,through the generalized time scale transformation, it can realize weak signal detection under arbitrary characteristic frequency. Experimental results showed that the strongly coupled system has better stability than the general coupled one does;under the background of trichotomous noise, the system’s output mean signal-noise ratio gain presents different symmetric distributions with variation of trichotomous noise state values;in the controlled system, with gradual increase in damping coefficient,the output response is gradually smooth; in the control system,when damping coefficient is very small, secondary resonance appears in the system output,with increase in damping coefficient,the second resonance peak gradually decreases until it disappears, and the first resonance peak gradually increases, this is because the well to well resonance completely replaces the joint resonance in and between wells.Finally, the genetic algorithm (GA) was used to do adaptive parametric optimization. It was found that compared with the traditional bi-stable and coupled Duffing systems, the proposed system has a higher output mean signal-noise ratio gain; after testing, the system has a good detection effect on the actual bearing fault signals, compared with the traditional bi-stable system, it can more significantly eliminate the side frequency signal interference.

关键词

  / 随机共振;Duffing振子;Van der Pol振子;三值噪声;微弱信号检测;轴承故障诊断

Key words

stochastic resonance / Duffing oscillator / Van der pol oscillator / trichotomous noise / weak signal detection / bearing fault diagnosis

引用本文

导出引用
张刚,吴瑕. 基于Duffing与Van der Pol强耦合系统的随机共振研究及轴承故障诊断[J]. 振动与冲击, 2020, 39(19): 266-276
ZHANG Gang, WU Xia. Stochastic resonance and bearing fault diagnosis basedon a Duffing-Van der Pol strongly coupled system[J]. Journal of Vibration and Shock, 2020, 39(19): 266-276

参考文献

[1] 张军, 潘泽鑫, 郑玉新, et al. 振动信号趋势项提取方法研究[J]. 电子学报, 2017(01):25-31.
Zhang Jun, Pan Zexin, Zheng Yuxin, et al. [J].Journal of Electronics, 2017 (01): 25-31.
[2] Feng Z, Zuo M J, Qu J, et al. Joint amplitude and frequency demodulation analysis based on local mean decomposition for fault diagnosis of planetary gearboxes[J]. Mechanical Systems and Signal Processing, 2013, 40(1): 56-75.
[3] 张丹威, 王晓东, 黄国勇. 相关系数SVD增强随机共振的单向阀故障诊断[J]. 电子学报, 2018, 46(11):138-146.
Zhang Danwei, Wang Xiaodong, Huang Guoyong. Fault diagnosis of one-way valve with correlation coefficient SVD enhanced stochastic resonance [J]. Journal of Electronics, 2018, 46 (11): 138-146.
[4] Chen J, Li Z, Pan J, et al. Wavelet transform based on inner product in fault diagnosis of rotating machinery: A review[J]. Mechanical systems and signal processing, 2016, 70: 1-35.
[5] Benzi R, Sutera A, Vulpiani A. The mechanism of stochastic resonance[J]. Journal of Physics A: mathematical and general, 1981, 14(11): L453.
[6] Lu S, He Q, Wang J. A review of stochastic resonance in rotating machine fault detection[J]. Mechanical Systems and Signal Processing, 2019, 116: 230-260.
[7] Lai, Zhihui , and Y. Leng . "Weak-signal detection based on the stochastic resonance of bistable Duffing oscillator and its application in incipient fault diagnosis." Mechanical Systems & Signal Processing 81(2016):60-74.
[8] Song J, Yi W. Analysis of dynamic behavior for Vanderpol oscillator under the single-input periodic signal[C]//2012 8th International Conference on Natural Computation. IEEE, 2012: 919-922.
[9] Liu J, Mao J, Huang B, et al. Chaos and reverse transitions in stochastic resonance[J]. Physics Letters A, 2018, 382(42-43): 3071-3078.
[10] Li N, Li L, Yang D, et al. The research of weak fault signal detection based on the duffing oscillator coupled synchronization[C]//2011 Fourth International Workshop on Chaos-Fractals Theories and Applications. IEEE, 2011: 319-323.
[11] Yi W, Song J. Behavior analysis of VanDerPol oscillator under the excitation of weak sinusoidal signal[C]//2012 8th International Conference on Natural Computation. IEEE, 2012: 932-934.
[12] Lucero J C, Schoentgen J. Modeling vocal fold asymmetries with coupled van der Pol oscillators[C]//Proceedings of Meetings on Acoustics ICA2013. ASA, 2013, 19(1): 060165.
[13] Kengne J, Chedjou J C, Kenne G, et al. Analog circuit implementation and synchronization of a system consisting of a van der Pol oscillator linearly coupled to a Duffing oscillator[J]. Nonlinear Dynamics, 2012, 70(3): 2163-2173.
[14] Wei Z, Chen Y, Niu Z, et al. Behavior Evolution of VanDerPol-Duffing Oscillator under the Excitation of Sinusoidal Signal[C]// International Symposium on Computational Intelligence & Design. 2016.
[15] Xu J, Chung K W. Effects of time delayed position feedback on a van der Pol–Duffing oscillator[J]. Physica D Nonlinear Phenomena, 2003, 180(1):17-39.
[16] Li X, Ji J C, Hansen C H, et al. The response of a Duffing–van der Pol oscillator under delayed feedback control[J]. Journal of Sound & Vibration, 2006, 291(3):644-655.
[17] 顾仁财, 许勇, 郝孟丽,等. Lévy稳定噪声激励下的Duffing与Van der Pol振子的随机分岔[J]. 物理学报, 2011, 60(6):157-161.
Gu Rencai, Xu Yong, Hao Mengli, et al. Random bifurcation of Duffing与Van der Pol oscillator excited by Lyvy stable noise [J]. Journal of Physics, 2011, 60 (6): 157-161.
[18] Yang T T, Zhang H Q, Xu Y, et al. Stochastic resonance in coupled underdamped bistable systems driven by symmetric trichotomous noises[J]. International Journal of Non-Linear Mechanics, 2014, 67: 42-47.
[19] Soika E, Mankin R. Response of a fractional oscillator to multiplicative trichotomous noise[J]. WSEAS Transactions on Biology and Biomedicine, 2010, 7: 21-30.
[20] Mankin R, Ainsaar A, Reiter E. Current reversals in ratchets driven by trichotomous noise[J]. Physical Review E, 2000, 61(6): 6359.
[21] 经哲, 郭利. 基于广义相关系数自适应随机共振的液压泵振动信号预处理方法[J]. 振动与冲击, 2016, 35(16):72-78.
Jing Zhe, Guo Li. Pretreatment method of hydraulic pump vibration signal based on generalized correlation coefficient adaptive stochastic resonance [J]. Journal of Vibration and Shock, 2016, 35(16): 72-78.
[22] 张超, 何园园. 基于遗传算法的自适应随机共振与VMD分解的轴承故障诊断方法[J]. 机械传动, 2018(4):156-163.
Zhang Chao, He Yuanyuan. Bearing Fault Diagnosis Method Based on Adaptive Stochastic Resonance and VMD Decomposition Based on Genetic Algorithm[J]. Mechanical Transmission, 2018(4):156-163.
[23] Zhou B, Lin D. Stochastic resonance in a time-delayed bistable system driven by trichotomous noise[J]. Indian Journal of Physics, 2017, 91(3): 299-307.
[24] 冷永刚, 赖志慧, 范胜波,等. 二维Duffing振子的大参数随机共振及微弱信号检测研究[J]. 物理学报, 2016, 61(23):230502-230502.
Leng Yonggang, Lai Zhihui, Fan Shengbo, et al. Large parameter stochastic resonance of two-dimensional Duffing oscillator and its application on weak signal detection[J]. Acta Physica Sinica -Chinese Edition-, 2012, 61(23):316-322.

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