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A calibration procedure for load cells to improve accuracy of mini-lysimeters in monitoring evapotranspiration

机译:用于称重细胞的校准程序,以提高Mini-Lysimers在监测蒸散中的精度

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摘要

We used twelve load cells (20 kg capacity) in a mini-lysimeter system to measure evapotranspiration simultaneously from twelve plants growing in separate pots in a glasshouse. A data logger combined with a multiplexer was used to connect all load cells with the full-bridge excitation mode to acquire load-cell signal. Each load cell was calibrated using fixed load within the range of 0-0.8 times the full load capacity of load cells. Performance of all load cells was assessed on the basis of signal settling time, excitation compensation, hysteresis and temperature. Final calibration of load cells included statistical consideration of these effects to allow prediction of lysimeter weights and evapotranspiration over short-time intervals for improved accuracy and sustained performance. Analysis of the costs for the mini-lysimeter system indicates that evapotranspiration can be measured economically at a reasonable accuracy and sufficient resolution with robust method of load-cell calibration.
机译:我们在微型测渗仪系统中使用了十二个称重传感器(容量为20 kg)来同时测量生长在温室中不同盆中的十二棵植物的蒸散量。数据记录器与多路复用器组合在一起,用于以全桥激励模式连接所有称重传感器,以获取称重传感器信号。每个称重传感器均使用在称重传感器满载能力的0-0.8倍范围内的固定载荷进行校准。根据信号建立时间,激励补偿,磁滞和温度评估所有称重传感器的性能。称重传感器的最终校准包括对这些影响的统计考虑,以允许在短时间间隔内预测溶渗仪的重量和蒸散量,从而提高准确性和持续性能。对小型测渗仪系统成本的分析表明,可以通过合理的准确度和足够的分辨率,以可靠的称重传感器校准方法经济地测量蒸散量。

著录项

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"english","id":9}
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