首页> 美国卫生研究院文献>Sensors (Basel Switzerland) >Array of Hall Effect Sensors for Linear Positioning of a Magnet Independently of Its Strength Variation. A Case Study: Monitoring Milk Yield during Milking in Goats
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Array of Hall Effect Sensors for Linear Positioning of a Magnet Independently of Its Strength Variation. A Case Study: Monitoring Milk Yield during Milking in Goats

机译:霍尔效应传感器阵列用于磁体的线性定位不受其强度变化的影响。案例研究:监控山羊挤奶期间的牛奶产量

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摘要

In this study we propose an electronic system for linear positioning of a magnet independent of its modulus, which could vary because of aging, different fabrication process, etc. The system comprises a linear array of 24 Hall Effect sensors of proportional response. The data from all sensors are subject to a pretreatment (normalization) by row (position) making them independent on the temporary variation of its magnetic field strength. We analyze the particular case of the individual flow in milking of goats. The multiple regression analysis allowed us to calibrate the electronic system with a percentage of explanation R2 = 99.96%. In our case, the uncertainty in the linear position of the magnet is 0.51 mm that represents 0.019 L of goat milk. The test in farm compared the results obtained by direct reading of the volume with those obtained by the proposed electronic calibrated system, achieving a percentage of explanation of 99.05%.
机译:在这项研究中,我们提出了一种用于线性定位磁体的电子系统,该磁体不受其模数的影响,该模数可能会因老化,制造工艺的不同等而变化。该系统包括一个线性阵列,该阵列由24个比例响应的霍尔效应传感器组成。来自所有传感器的数据经过逐行(位置)预处理(归一化),使其独立于其磁场强度的暂时变化。我们分析了山羊挤奶中个体流量的特殊情况。多元回归分析使我们能够以解释百分比R 2 = 99.96%校准电子系统。在我们的案例中,磁体线性位置的不确定度为0.51 mm,代表0.019 L的山羊奶。农场中的测试将通过直接读取体积获得的结果与通过建议的电子校准系统获得的结果进行了比较,达到了99.05%的解释率。

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