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A nonlinear state space approach to tracking damage evolution: experimental application to a gearbox

机译:跟踪损伤演化的非线性状态空间方法:齿轮箱的实验应用

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A nonlinear observed developed in previous work by the authors (1,2) is used experimentally to track damage evolution in the Mechanical Diagnostics Test Bed (MDTB) at Penn State's Applied Research Laboratory. The observer uses a non-linear. two-time-scale modeling strategy based on the delay coordinate reconstruction of the system's phase space. The method treats "damage" as evolving in a hierarchical dynamical system containing a fast, directly observable subsystem (vibrations) cou-pled to a slow, hidden subsystem (damage). Resoults of tracking damage evolution in the MDTB systems leading to gear-tooth failure are presented. The nonlinear observer tracks changes in the hidden damage stage succeffully. Furthermore, the effective dimensionality of the underlying fast-time system is determined as a by-product of our calculation.
机译:作者在先前工作中发现的非线性现象(1,2)在宾州州立大学应用研究实验室的机械诊断试验台(MDTB)中用于跟踪损伤的演变。观察者使用非线性。基于系统相空间延迟坐标重构的二次尺度建模策略。该方法将“损坏”视为在包含快速,可直接观察的子系统(振动)耦合到缓慢的隐藏子系统(损坏)的分层动力学系统中演化。提出了跟踪MDTB系统中导致齿轮齿故障的损伤演变的思路。非线性观察者成功地跟踪了隐藏损伤阶段的变化。此外,基本快速系统的有效维数被确定为我们计算的副产品。

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