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A Systematic Sensor-Placement Strategy for Enhanced Defect Detection in Rolling Bearings

机译:用于增强滚动轴承缺陷检测的系统传感器放置策略

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This paper presents a systematic approach to determining optimal sensor locations with the goal to improve data-acquisition quality and the effectiveness in machine condition monitoring. The presented method ranks an initial set of candidate sensor locations based on their respective effective-independence (EfI) value, which is a measure for the contribution of each location to the measurement data matrix. Through an iterative procedure, locations having relatively low EfI values are progressively eliminated from the candidate set. The remaining locations with high EfI values have shown to be more effective in providing sensing coverage of the machine component being monitored. The method was applied to selecting locations for four accelerometers to monitor a rolling element bearing with a localized defect. Experimental tests have confirmed the effectiveness of the method in improving sensing quality.
机译:本文提出了一种确定最佳传感器位置的系统方法,旨在提高数据采集质量和机器状态监测的有效性。所提出的方法基于候选传感器位置的各自有效独立性(EfI)值对一组初始位置进行排序,该值是每个位置对测量数据矩阵的贡献的度量。通过迭代过程,从候选集中逐渐消除具有相对较低EfI值的位置。具有较高EfI值的其余位置已显示在提供被监视机器组件的感应范围方面更有效。该方法被应用于选择四个加速度计的位置,以监测具有局部缺陷的滚动轴承。实验测试已经证实了该方法在改善感测质量方面的有效性。

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