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ON-LINE MEASUREMENT OF GRAIN QUALITY WITH NIR TECHNOLOGY

机译:利用NIR技术在线测量谷物质量

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A feasibility study was conducted to measure grain quality (moisture and protein content) with near-infrared reflection (NIR) technology on a conventional New Holland TX64 combine harvester. A Zeiss Corona NIR sensor was installed on a bypass unit of the clean grain elevator, and reference samples were taken at the end of the bubble-up auger, which transports the grain from the clean grain elevator to the grain bin. Measured signals at the diode array of the spectrophototneter were highly variable in time, and an appropriate low-pass filter was designed to extract relevant spectra at a sampling rate of 1 Hz. In addition, an optimal time shift was calculated between the location of the NIR measurement and the reference sampling to guarantee an optimal synchronization between the measured spectra and reference values. Preprocessing, calibration, and validation were executed using the PLSplus/IQ module of the GRAMS/32 software package. The calibration models were developed using the PLS algorithm and validated through cross-validation. Cross-validation errors of 0.57% and 0.31% were achieved for the on-line protein and moisture content measurements, respectively. These accuracies are comparable with the prediction accuracy that was achieved on a similar, but stationary, unit and prove the technical feasibility of estimating grain quality on-the-go with NIR technology.
机译:在常规的New Holland TX64联合收割机上进行了可行性研究,以近红外反射(NIR)技术测量谷物质量(水分和蛋白质含量)。将Zeiss Corona NIR传感器安装在清洁谷物提升机的旁路单元上,并在起泡螺旋钻的末端采集参考样品,该气泡将螺旋输送机将谷物从清洁谷物提升机运送到谷物仓。在分光光敏二极管的二极管阵列上测得的信号在时间上是高度可变的,并且设计了适当的低通滤波器来以1 Hz的采样率提取相关光谱。另外,在NIR测量的位置和参考采样之间计算了最佳时移,以确保测量光谱和参考值之间的最佳同步。预处理,校准和验证是使用GRAMS / 32软件包的PLSplus / IQ模块执行的。使用PLS算法开发校准模型,并通过交叉验证进行验证。在线蛋白质和水分含量测量的交叉验证误差分别为0.57%和0.31%。这些精度可与在类似但固定的单元上获得的预测精度相媲美,并证明了使用NIR技术随时随地估算谷物质量的技术可行性。

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