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Three dimensional radio-frequency electromagnetic imaging of an in-bin grain conditioning process

机译:箱内晶粒调理过程的三维射频电磁成像

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Most cereal grains and oilseeds are harvested at temperatures and/or moisture contents that are not suitable for long-term storage. Safely storing these grains for more than a few days requires conditioning or drying of the grain, which is usually done in storage bins with ambient or heated air. While critical for safe-storage, this process is currently not closely monitored, or is monitored with point temperature/humidity sensors which are only sensitive to the grain in close proximity to the sensor. Herein, we present the use of an Electromagnetic Imaging (EMI) system that creates 3D images of the grain moisture content of the entire bin, and shows the use of the EMI system to monitor a week-long grain conditioning process in a scaled grain bin. The 3D imaging results are compared with data from three point sensors that were embedded in the bin. We further confirm the 3D experimental results with a series of simulations where the exact 3D image is known. The results show that the 3D images broadly follow the point sensors, with some image artifacts due in part to problems with modelling the point-sensor cable in the bin. These artifacts were eliminated through a post-processing algorithm that divides the image into a small number of layers and averages the results within each layer. Finally, we conclude that the EMI system is capable of monitoring the grain conditioning process, and will show when the grain has reached safe storage conditions.
机译:大多数谷物和油籽在不适合长期储存的温度和/或水分含量中收获。安全地储存这些颗粒超过几天需要调节或干燥谷物,这通常在具有环境或加热空气的储物箱中进行。虽然对于安全存储至关重要,但目前没有密切监测该过程,或者用点温度/湿度传感器监控,这些传感器仅对传感器靠近近距离的颗粒敏感。在此,我们介绍了使用产生整个箱的晶粒含量含量的3D图像的电磁成像(EMI)系统,并显示使用EMI系统在缩放谷物箱中监测一周长的晶粒调理过程。将3D成像结果与来自箱中嵌入的三点传感器的数据进行比较。我们进一步确认3D实验结果,通过一系列仿真,其中已知确切的3D图像。结果表明,3D图像广泛遵循点传感器,部分图像伪像部分地由于在箱中建模点传感器电缆而导致的问题。通过后处理算法消除了这些工件,其将图像划分为少量层并平均每层内的结果。最后,我们得出结论,EMI系统能够监测晶粒调节过程,并将显示谷物达到安全储存条件。

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