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首页> 外文期刊>Micro & Nano Letters, IET >Tilt sensor based on a dual-axis microaccelerometer with maximum sensitivity and minimum uncertainty in the full measurement range
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Tilt sensor based on a dual-axis microaccelerometer with maximum sensitivity and minimum uncertainty in the full measurement range

机译:基于双轴微加速度计的倾斜传感器,在整个测量范围内具有最大的灵敏度和最小的不确定性

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摘要

This work presents an approach to enhance the sensitivity and lower the uncertainty of a tilt sensor based on a dual-axis accelerometer. The arctangent function arctan(a2/a1) instead of traditional arcsine function arcsin(a2/g) or arcsin(a1/g) is used to solve for tilt angle. As a result, the measured sensitivity of tilt angle is kept in the maximum constant value (17.45 mg/°) and the measurement uncertainty is kept in the minimum constant value (0.033° for the tilt sensor of this work) in the measurement range of -90° to +90°. It is also experimentally verified that the solving method has the maximum sensitivity (the average value of 17.74 mg/° with a root mean square of 0.008 mg/°) and minimum uncertainty (the average value of 0.034° with a root mean square of 0.003°) compared with other solving methods in the range of -90° to +90°]. The output of tilt sensor in the range of -90° to+90° and +90° to +270° is axial symmetry about 90°, so it is easy to extend the measurement range to 360°. Therefore, the presented approach is proved to be effective to enhance tilt sensor sensitivity and lower the uncertainty.
机译:这项工作提出了一种基于双轴加速度计的方法来提高倾斜传感器的灵敏度并降低其不确定性。反正切函数arctan( a 2 / a 1 )代替了传统的反正弦函数arcsin( a 2 / g )或arcsin( a 1 / g )用于求解倾斜角。结果,在以下的测量范围内,测得的倾角灵敏度保持在最大常数(17.45 mg /°),测量不确定度保持在最小常数(对于本发明的倾斜传感器为0.033°)。 -90°至+ 90°。还通过实验验证了该求解方法具有最高灵敏度(平均值为17.74 mg /°,均方根为0.008 mg /°)和最小不确定度(平均值为0.034°,均方根为0.003) °)与-90°至+ 90°]范围内的其他求解方法相比。倾斜传感器的输出在-90°至+ 90°和+ 90°至+ 270°的范围内,具有约90°的轴向对称性,因此很容易将测量范围扩展至360°。因此,该方法被证明可以有效地提高倾斜传感器的灵敏度并降低不确定度。

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