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首页> 外文期刊>International Journal of Modelling, Identification and Control >Non-linear system identification of gear crack failure based on second order Volterra kernel
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Non-linear system identification of gear crack failure based on second order Volterra kernel

机译:基于二阶Volterra核的齿轮裂纹非线性系统辨识

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Non-linear system identification has attracted great interest in mechanical fields. Against the weak vibration signals of gear crack failure and the considerable but ignored influence by input variation in gear tooth system non-linear working condition, which put forward a huge challenge to gear crack failure detection and identification's accurate, we have proposed a new non-linear non-parameter method that used the second order Volterra kernel function to analyse the inner contact between crack failure and the corresponding non-linear changes in whole system term. After identifying gear tooth system second order kernel function with input and output time series, we analysed the non-linear information indicated by frequency spectrum in detail. Anglicisation and comparison results show that gear tooth crack failure's second order Volterra kernel function considered the fault identification's correction influenced by input elements and was sensitive to system non-linear changes which were caused by different fault conditions. And, this non-linear system identification method can solve the diagnosis' fuzziness and indeterminacy problems caused by traditional frequency sideband theory. This new method is also helpful for mechanical system modelling, security running monitoring, dynamic design, the study of dynamic characteristics, and the fault diagnosis of rotary systems.
机译:非线性系统识别在机械领域引起了极大的兴趣。针对齿轮裂纹失效的微弱振动信号以及齿轮系统非线性工作条件下输入变化引起的可忽略但不小的影响,这对齿轮裂纹失效的检测和识别的准确性提出了巨大的挑战,我们提出了一种新的非线性非参数方法,它使用二阶Volterra核函数来分析裂纹破坏与整个系统项中相应的非线性变化之间的内在联系。在识别出具有输入和输出时间序列的齿轮系统的二阶核函数之后,我们详细分析了频谱指示的非线性信息。角度分析和比较结果表明,齿轮裂纹裂纹的二阶Volterra核函数考虑了输入元素对故障识别的校正作用,并且对不同故障条件引起的系统非线性变化敏感。而且,这种非线性系统识别方法可以解决传统频率边带理论所引起的诊断的模糊性和不确定性问题。这种新方法还有助于机械系统建模,安全运行监视,动态设计,动态特性的研究以及旋转系统的故障诊断。

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