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Complex machine dynamics: systematic recurrence quantification analysis of disk brake vibration data

机译:复杂机器动力学:磁盘制动振动数据的系统复发量化分析

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摘要

Complex machine dynamics, as caused by friction-induced vibrations and related to brake squeal, have gained significant attention in research and industry for decades. Today, remedies heavily rely on experimental testing due to the low prediction quality of numerical models. However, there is considerable lack of in-depth studies in characterizing self-excited oscillations encoded in scalar measurements. We complement previous works on phase-space reconstruction and recurrence plots analysis to a larger data base by applying a novel systematic approach using a large data base. This framework considers appropriate delay embedding, time series partitioning into squealing and non-squealing parts and comparison to operational parameters of the brake system. By means of recurrence plot analysis, we illustrate that friction-excited vibrations are multi-scale in nature. Results confirm the existence of low-dimensional attractors in squealing regimes with increasing values of determinism and periodicity with rising vibration levels. It is shown that the squeal propensity can be directly linked to recurrence quantification measures. Using determinism and the clustering coefficient as metrics, we show for the first time that is possible to predict instabilities in regions of non-squealing conditions.
机译:由摩擦振动和与制动尖叫导致的复杂机器动态,几十年来,在研究和工业中取得了重大关注。今天,由于数值模型的预测质量低,依赖于实验测试的补救措施。然而,在表征在标量测量中编码的自激振荡时,存在相当大的深入研究。我们通过使用大型数据库应用新颖的系统方法来补充前面的工作空间重建和复发绘图分析到更大的数据库。该框架考虑了适当的延迟嵌入,时间序列分区成脉冲和非尖叫部分,并与制动系统的操作参数进行比较。通过复发绘图分析,我们说明摩擦激发振动在自然界中是多规模的。结果证实,在尖叫状态下存在低维吸引子,随着确定性和周期性的增加,振动水平上升。结果表明,尖端倾向可以与复发量化措施直接相关。使用确定性和聚类系数作为指标,我们首次示出了可以预测非尖叫状况区域中的不稳定性。

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