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Fault diagnosis of complex system based on nonlinear frequency spectrum fusion

机译:基于非线性频谱融合的复杂系统故障诊断

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摘要

A novel fault detection and diagnosis approach is proposed for nonlinear complex systems by combining nonlinear frequency spectrum characteristics and evidence theory. In order to overcome the problem of calculated amount expansion of generalized frequency response functions, single-dimensional nonlinear output frequency response functions are used to obtain nonlinear frequency spectrum, from which, features of nonlinear frequency spectrum are extracted. The fault diagnosis model of multiple faults is given based on evidence theory. The mass functions of evidences are obtained according to the similarity among different modes. In order to solve the problem of evidence fusion in the situation of evidence confliction, a dynamic parameter conflicting evidence combination method is proposed based on the average credibility. Fault diagnosis of the transmission system of numerical control machine tool is studied through nonlinear frequency spectrum. Simulations indicate that the proposed approach has simple calculation and high recognition rate for faults.
机译:结合非线性频谱特征和证据理论,提出了一种非线性复杂系统故障检测与诊断的新方法。为了克服广义频率响应函数计算量扩展的问题,使用一维非线性输出频率响应函数获得非线性频谱,并从中提取非线性频谱的特征。基于证据理论,给出了多故障的故障诊断模型。根据不同模式之间的相似性获得证据的质量函数。为了解决证据冲突情况下的证据融合问题,提出了一种基于平均可信度的动态参数冲突证据组合方法。通过非线性频谱研究了数控机床传动系统的故障诊断。仿真表明,该方法计算简单,故障识别率高。

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