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Modelling accelerometers for transient signals using calibration measurements upon sinusoidal excitation

机译:使用正弦激励下的校准测量为瞬态信号建模加速度计

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摘要

A recently proposed accelerometer model is applied for determining the accelerometer's output to transient accelerations.The model consists of a linear, second-order differential equation with unknown coefficients. It is proposed to estimate these model parameters from sinusoidal calibration measurements, and an estimation procedure based on linear least-squares is presented. In addition, the uncertainties associated with the estimated parameters are determined utilizing a Monte Carlo simulation technique. The performance of the proposed modelling approach was tested by its application to calibration measurements of two back-to-back accelerometers (ENDEVCO type 2270 and Bruel & Kjaer type 8305). For each of the two accelerometers, the model was first estimated from sinusoidal calibration measurements and then used to predict the accelerometer's behaviour for two shock calibration measurements. Measured and predicted shock sensitivities were found consistent with differences below 1percent in most cases which confirms the benefit of the proposed modelling approach.
机译:应用最近提出的加速度计模型来确定加速度计的输出到瞬时加速度,该模型由系数未知的线性二阶微分方程组成。提出了从正弦校准测量中估计这些模型参数的方法,并提出了一种基于线性最小二乘的估计程序。此外,利用蒙特卡洛模拟技术确定与估计参数相关的不确定性。通过将其应用于两个背对背加速度计(ENDEVCO 2270型和Bruel&Kjaer 8305型)的校准测量中,对所提出的建模方法的性能进行了测试。对于两个加速度计中的每一个,首先从正弦校准测量中估算模型,然后将其用于预测两次震动校准测量中的加速度计性能。在大多数情况下,测得的和预测的震动敏感度均低于1%,这证实了所提出的建模方法的好处。

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