首页> 外文会议>Proceedings of the ASME international design engineering technical conferences and computers and information in engineering conference 2017 >DISCRIMINATION OF MULTIPLE FAULTS IN BEARINGS USING DENSITY-BASED ORTHOGONAL FUNCTIONS OF THE TIME RESPONSE
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DISCRIMINATION OF MULTIPLE FAULTS IN BEARINGS USING DENSITY-BASED ORTHOGONAL FUNCTIONS OF THE TIME RESPONSE

机译:利用基于密度的时间响应正交函数识别轴承中的多个故障

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This study investigates the use of the mapped density of time response using orthogonal functions to detect single and multiple faults in rolling element bearings. The method is based on constructing the density of a single time response of the system by using orthogonal functions. The coefficients of the orthogonal functions create the feature vector in order to discriminate between different rolling element bearing faults. The method does not require preprocessing of the data, noise reduction, or feature selection. This method has been applied to vibration data of different bearing conditions at rotational speeds ranging from 300 rpm to 3000 rpm. These conditions include a healthy bearing, and bearings with defects in inner race, outer race, combination of inner race and outer race and rolling element. The results have shown remarkable detection efficiency in the case of a single and two bearing fault configurations. In general, for all bearing configurations, the approach has high performance in detecting defective conditions. These results indicate that using the mapped density to characterize the system under different conditions has considerable potential in bearing diagnostics.
机译:这项研究调查使用时间响应的映射密度和正交函数来检测滚动轴承中的单个和多个故障。该方法基于通过使用正交函数构造系统的单个时间响应的密度。正交函数的系数创建特征向量,以便区分不同的滚动轴承故障。该方法不需要数据预处理,降噪或功能选择。该方法已应用于转速为300 rpm至3000 rpm的不同轴承状况的振动数据。这些条件包括轴承状况良好,以及内圈,外圈,内圈和外圈以及滚动元件结合不良的轴承。结果表明,在单个和两个轴承故障配置的情况下,检测效率非常高。通常,对于所有轴承配置,该方法都具有检测缺陷状况的高性能。这些结果表明,使用映射密度在不同条件下表征系统具有很大的潜力用于轴承诊断。

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