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Gear Fault Diagnostics Integrated in the Motion Servo Drive for Electromechanical Actuators

机译:机电执行器运动伺服驱动器中集成的齿轮故障诊断

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This paper presents contributions made in gear fault diagnostics for motion servos with continuously variable speed as used for aerospace and automotive electromechanical actuators. As the first step for motion servo diagnostics, an observer-based kinematic error estimator is developed whereby this estimated kinematic error is proposed as an operating point-independent gear surface fault signature. As the second step, a signal processing method is developed for real-time implementation of spatial domain resampling of regular time domain samples, and this method is combined with spatial domain synchronous averaging methods, which are shown to be very effective in filtering out unwanted asynchronous signatures. Lastly, a motion servo actuator with a gear surface failure is tested, and the proposed methods are shown to successfully extract the kinematic error profiles of the defective gear during motion servo operation over a wide range of continuously varying velocity.
机译:本文介绍了用于航天和汽车机电致动器的无级变速运动伺服器在齿轮故障诊断中所做的贡献。作为运动伺服诊断的第一步,开发了基于观察者的运动误差估计器,据此,该估计的运动误差被建议为与工作点无关的齿轮表面故障特征。第二步,开发了一种信号处理方法,用于实时执行常规时域样本的空间域重采样,并将该方法与空间域同步平均方法相结合,这在过滤掉不需要的异步信号方面非常有效。签名。最后,对具有齿轮表面故障的运动伺服致动器进行了测试,结果表明所提出的方法能够在大范围连续变化的速度范围内成功提取运动伺服操作过程中有故障齿轮的运动学误差曲线。

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