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A New Technique for Optimization of Linear Displacement Measurement based on MEMS Accelerometer

机译:基于MEMS加速度计的线性位移测量优化新技术

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Linear displacement has been widely applied in the technology and applications for Industry 4.0. The Micro-electromechanical systems (MEMS) accelerometer is a potential candidate in linear displacement measurement by means of acceleration acquisition. However, the error still presents on the displacement measurement at the starting point or each time the sensor ends its motion and returns to a static state due to the noise and imperfection of mechanical structure. The paper presents a new algorithm, ‘No Displacement Zero Translational Accumulation’ (NDZTA), to solve the cumulative error of linear measurement when the sensor stays at stationary points. The proposed filter removes noise by pulling down the current velocity and acceleration to 0 immediately when the sensor finishes its motion. Moreover, a simple but practical way to calculate the displacement via the ‘Area Integration Method’ was visualized and analyzed in detail. The experimental result shows a good accuracy as well as stability of measured result with the maximum error only about 0.2 cm in the range of 200 cm.
机译:线性位移已广泛应用于工业4.0的技术和应用中。微机电系统(MEMS)加速度计是通过加速度采集的线性位移测量的潜在候选者。然而,误差仍然在起始点处的位移测量上呈现出位移测量或每次传感器结束其运动并且由于机械结构的噪声和缺陷而返回到静态状态。本文提出了一种新的算法,“没有位移零翻译累积”(NDZTA),以解决当传感器处于固定点时线性测量的累积误差。所提出的滤波器由当前速度和加速度下拉到0时立即传感器完成其运动噪声去除。此外,通过“区域集成方法”计算并详细分析了一种简单但实用的方式来计算位移。实验结果表明了良好的精度以及测量结果的稳定性,最大​​误差在200cm的范围内仅约0.2厘米。

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