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Application of Improved Kalman Filter in High Precision Electronic Scales

机译:改进的Kalman滤波器在高精度电子秤中的应用

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Aiming at the problem of large error and poor stability caused by the nonlinear error in the input-output characteristics of the resistance strain type weighing sensor and the random interference noise in the system acquiring data, a Kalman filter processing method combined with piecewise linear interpolation calibration is proposed. The method not only eliminates the accumulated error, but also achieves the fitting and calibration of the characteristic curve of the nonlinear weighing relationship. What's more, the precision is improved while the requirements of the system to the environment are broadened. The test results show that the electronic scale has a range of 1kg and a precision of 0.02g, and the repeated test error is less than 0.03g, which achieves the expected effect.
机译:针对误差误差和稳定性差的问题,在电阻应变型称重传感器的输入 - 输出特性中引起的非线性误差和系统获取数据中的随机干扰噪声,卡尔曼滤波处理方法与分段线性插值校准相结合提出。该方法不仅消除了累积的误差,而且还实现了非线性称重关系的特征曲线的拟合和校准。更重要的是,改善了精度,而系统对环境的要求变宽。测试结果表明,电子秤的范围为1kg,精度为0.02g,重复的试验误差小于0.03g,这实现了预期效果。

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