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Proposed digital, auto ranging, self calibrating inertial sensor

机译:拟议的数字式,自动量程,自校准惯性传感器

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摘要

A novel means of measuring inertial force is proposed which converts the spatial displacement measurement of a conventional mass-on-a-spring accelerometer to a time interval measurement by harmonically oscillating the mass-on-a-spring and creating digital triggering events when the mass passes known displacement points. By curve fitting the measured time intervals into the sinusoidal nature of the harmonic oscillator, it is possible to measure acceleration without the need of adjustable parameters (such as bias and scale factor) derived by calibration. Being a function of the accuracy of the time interval measurement, the device sensitivity varies with resonant frequency, clock resolution, and oscillation amplitude. The resonant frequency of the harmonic oscillation and the oscillation amplitude can be adjusted in real time to optimize performance for a specific dynamic range.
机译:提出了一种测量惯性力的新方法,该方法通过谐波振荡弹簧上的质量并在质量发生时产生数字触发事件,将传统的弹簧上质量加速度计的空间位移测量转换为时间间隔测量。通过已知的位移点。通过将测量的时间间隔曲线拟合到谐波振荡器的正弦波特性,可以测量加速度,而无需通过校准得出可调节的参数(例如偏差和比例因子)。作为时间间隔测量精度的函数,器件灵敏度随谐振频率,时钟分辨率和振荡幅度而变化。谐波振荡的谐振频率和振荡幅度可以实时调整,以优化特定动态范围的性能。

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