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首页> 外文期刊>IEEE Transactions on Instrumentation and Measurement >Interrupted ultrasonic bolt load measurements using the pulsed phase-locked loop system
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Interrupted ultrasonic bolt load measurements using the pulsed phase-locked loop system

机译:使用脉冲锁相环系统中断超声波螺栓载荷测量

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摘要

A method of reacquiring a previous phase lock-point using the pulsed phase-locked loop (PPLL) ultrasonic system in situations where the measurement is interrupted such as by removing and recoupling the transducer is developed. Operation of the PPLL is mathematically analyzed in the time domain rather than in the conventional frequency domain, providing a method of characterizing multiple lock-points. The general lock-point reacquisition method that follows from the model relies on measurement over a frequency range that spans several lock-points and is demonstrated to work well for interrupted measurements on threaded fasteners. The method is analyzed for sensitivity to signal noise, and an equation is derived, expressing the number of lock-points over which to measure for successful lock-point reacquisition as a function of signal noise level. Experimental verification on a glass block shows that theoretical values obtained with this model are in good agreement with measurements. Automation of the method presented has been demonstrated, showing that it offers a practical, objective approach to making interrupted load measurements, thereby greatly widening the range of applications of the PPLL.
机译:开发了一种在测量中断(例如通过拆卸和重新耦合换能器)而中断测量的情况下,使用脉冲锁相环(PPLL)超声系统重新获取先前的锁相点的方法。 PPLL的操作是在时域而不是在常规频域中进行数学分析的,从而提供了一种表征多个锁定点的方法。该模型遵循的通用锁定点重新获取方法依赖于跨多个锁定点的频率范围内的测量,并被证明可以很好地用于螺纹紧固件的中断测量。分析了该方法对信号噪声的敏感性,并推导出了一个方程式,该方程式表示了要成功测量锁定点重新获得的锁定点数,该信号是信号噪声水平的函数。在玻璃块上进行的实验验证表明,使用该模型获得的理论值与测量值非常吻合。已经证明了所提出方法的自动化,表明它提供了一种实用,客观的方法来进行中断的负载测量,从而大大扩展了PPLL的应用范围。

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