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CHARACTERIZATION OF DYNAMICAL INSTABILITY USING INSTANTANEOUS FREQUENCY

机译:利用瞬时频率表征动态不稳定性

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摘要

Dynamical instability induced by the initiation and advancement of mechanical faults in rotary elements is detrimental to the reliability and operation safety of the entire system. The inherent nonlinearity associated with bifurcation presents itself as difficulties in identifying and isolating features indicative of the presence and progression of faults that could lead to eventual mechanical deterioration. The perturbed and deteriorated states of a bearing-shaft system subjected to the actions of two types of commonly seen mechanical faults, namely, rotor speed and imbalance, are investigated using the basic notion of instantaneous frequency. The presented approach realizes temporal events of both short and long time scales as instantaneous frequencies in the joint time-frequency domain and thus effectively uncouples the harmonic components resulted from the coupling of multitude faults. Examples are given to demonstrate the feasibility of applying the approach to the characterization of various deteriorating bearing states and the identification of parameters associated with various modes of instability and chaotic response.
机译:由旋转元件中的机械故障的引发和发展引起的动态不稳定性,不利于整个系统的可靠性和操作安全性。与分叉有关的固有非线性将其自身作为识别和隔离表示可能导致最终机械性能恶化的故障的存在和发展的特征的困难。使用瞬时频率的基本概念来研究轴承轴系统在两种常见的机械故障(即转子速度和不平衡)的作用下的扰动和劣化状态。所提出的方法在联合时频域中实现了短时间尺度和长时间尺度的瞬时事件作为瞬时频率,从而有效地解耦了由多个故障耦合导致的谐波分量。举例说明了将该方法应用于表征各种轴承状态恶化以及识别与各种不稳定性和混沌响应模式有关的参数的可行性。

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