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首页> 外文期刊>Review of Scientific Instruments >Testing accelerometer rectification error caused by multidimensional composite inputs with double turntable centrifuge
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Testing accelerometer rectification error caused by multidimensional composite inputs with double turntable centrifuge

机译:使用双转盘离心机测试多维复合输入引起的加速度计校正误差

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摘要

Rectification error is a critical characteristic of inertial accelerometers. Accelerometers working in operational situations are stimulated by composite inputs, including constant acceleration and vibration, from multiple directions. However, traditional methods for evaluating rectification error only use one-dimensional vibration. In this paper, a double turntable centrifuge (DTC) was utilized to produce the constant acceleration and vibration simultaneously and we tested the rectification error due to the composite accelerations. At first, we deduced the expression of the rectification error with the output of the DTC and a static model of the single-axis pendulous accelerometer under test. Theoretical investigation and analysis were carried out in accordance with the rectification error model. Then a detailed experimental procedure and testing results were described. We measured the rectification error with various constant accelerations at different frequencies and amplitudes of the vibration. The experimental results showed the distinguished characteristics of the rectification error caused by the composite accelerations. The linear relation between the constant acceleration and the rectification error was proved. The experimental procedure and results presented in this context can be referenced for the investigation of the characteristics of accelerometer with multiple inputs.
机译:整流误差是惯性加速度计的关键特性。复合输入,包括来自多个方向的恒定加速度和振动,刺激了在运行状态下工作的加速度计。但是,传统的评估整流误差的方法仅使用一维振动。在本文中,使用双转盘离心机(DTC)同时产生恒定的加速度和振动,并且我们测试了由于复合加速度引起的整流误差。首先,我们用DTC的输出和被测单轴摆式加速度计的静态模型推导了整流误差的表达式。根据整流误差模型进行了理论研究和分析。然后描述了详细的实验步骤和测试结果。我们在不同的频率和振幅下,以各种恒定加速度测量了整流误差。实验结果表明,复合加速度引起的整流误差具有明显的特征。证明了恒定加速度与整流误差之间的线性关系。在此情况下提出的实验程序和结果可用于研究具有多个输入的加速度计的特性。

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