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A novel implementation of homodyne time interval analysis method for primary vibration calibration

机译:零振时间间隔分析方法在一次振动标定中的新实现

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In this paper, the shortcomings and their causes of the conventional homodyne time interval analysis (TIA) method is described with respect to its software algorithm and hardware implementation, based on which a simplified TIA method is proposed with the help of virtual instrument technology. Equipped with an ordinary Michelson interferometer and dual channel synchronous data acquisition card, the primary vibration calibration system using the simplified method can perform measurements of complex sensitivity of accelerometers accurately, meeting the uncertainty requirements laid down in pertaining ISO standard. The validity and accuracy of the simplified TIA method is verified by simulation and comparison experiments with its performance analyzed. This simplified method is recommended to apply in national metrology institute of developing countries and industrial primary vibration calibration labs for its simplified algorithm and low requirements on hardware.
机译:本文针对传统零差时间间隔分析(TIA)方法的软件算法和硬件实现方法,阐述了其缺点及其原因,并在虚拟仪器技术的基础上提出了一种简化的TIA方法。配备了普通的迈克尔逊干涉仪和双通道同步数据采集卡,使用简化方法的主要振动校准系统可以准确地测量加速度计的复杂灵敏度,满足有关ISO标准中规定的不确定性要求。通过仿真和比较实验验证了简化TIA方法的有效性和准确性,并分析了其性能。由于该简化算法和对硬件的要求较低,因此建议在发展中国家的国家计量院和工业一次振动校准实验室中应用该简化方法。

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