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Unbalance detection in rotor systems with active bearings using self-sensing piezoelectric actuators

机译:使用自感应压电致动器的主动轴承转子系统中的不平衡检测

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Machines which are developed today are highly automated due to increased use of mechatronic systems. To ensure their reliable operation, fault detection and isolation (FDI) is an important feature along with a better control. This research work aims to achieve and integrate both these functions with minimum number of components in a mechatronic system. This article investigates a rotating machine with active bearings equipped with piezoelectric actuators. There is an inherent coupling between their electrical and mechanical properties because of which they can also be used as sensors. Mechanical deflection can be reconstructed from these self-sensing actuators from measured voltage and current signals. These virtual sensor signals are utilised to detect unbalance in a rotor system. Parameters of unbalance such as its magnitude and phase are detected by parametric estimation method in frequency domain. Unbalance location has been identified using hypothesis of localization of faults. Robustness of the estimates against outliers in measurements is improved using weighted least squares method. Unbalances are detected in a real test bench apart from simulation using its model. Experiments are performed in stationary as well as in transient case. As a further step unbalances are estimated during simultaneous actuation of actuators in closed loop with an adaptive algorithm for vibration minimisation. This strategy could be used in systems which aim for both fault detection and control action.
机译:由于越来越多地使用机电一体化系统,当今开发的机器实现了高度自动化。为了确保它们的可靠运行,故障检测和隔离(FDI)是一项重要功能,同时具有更好的控制能力。这项研究工作旨在在机电一体化系统中以最少的组件数量实现和集成这两种功能。本文研究了带有主动轴承的旋转机械,该主动轴承配有压电致动器。它们的电气和机械性能之间存在固有的耦合,因此它们也可用作传感器。可以从这些自感应执行器根据测量的电压和电流信号来重建机械偏转。这些虚拟传感器信号用于检测转子系统中的不平衡。通过频域中的参数估计方法来检测不平衡的大小和相位等参数。已使用故障定位假说确定了不平衡位置。使用加权最小二乘法提高了估计值相对于测量值异常值的稳健性。除了使用其模型进行仿真之外,还可以在实际测试台中检测不平衡。实验既可以在静态情况下也可以在瞬态情况下进行。作为进一步的步骤,使用用于振动最小化的自适应算法在闭环中同时致动致动器期间估计不平衡。该策略可用于旨在故障检测和控制动作的系统中。

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