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Prediction of the Leaf Primordia of Potato Tubers Using Sensor Fusion and Wavelength Selection

机译:基于传感器融合和波长选择的马铃薯块茎叶原基预测

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The sprouting of potato tubers during storage is a significant problem that suppresses obtaining high quality seeds or fried products. In this study, the potential of fusing data obtained from visible (VIS)ear-infrared (NIR) spectroscopic and hyperspectral imaging systems was investigated, to improve the prediction of primordial leaf count as a significant sign for tubers sprouting. Electronic and lab measurements were conducted on whole tubers of Frito Lay 1879 (FL1879) and Russet Norkotah (R.Norkotah) potato cultivars. The interval partial least squares (IPLS) technique was adopted to extract the most effective wavelengths for both systems. Linear regression was utilized using partial least squares regression (PLSR), and the best calibration model was chosen using four-fold cross-validation. Then the prediction models were obtained using separate test data sets. Prediction results were enhanced compared with those obtained from individual systems’ models. The values of the correlation coefficient (the ratio between performance to deviation, or r (RPD)) were 0.95(3.01) and 0.9s6(3.55) for FL1879 and R.Norkotah, respectively, which represented a feasible improvement by 6.7%(35.6%) and 24.7%(136.7%) for FL1879 and R.Norkotah, respectively. The proposed study shows the possibility of building a rapid, noninvasive, and accurate system or device that requires minimal or no sample preparation to track the sprouting activity of stored potato tubers.
机译:马铃薯块茎在贮藏期间的发芽是一个重要的问题,抑制了获得高质量种子或油炸产品的能力。在这项研究中,对从可见(VIS)/近红外(NIR)光谱和高光谱成像系统获得的融合数据的潜力进行了研究,以提高对原始叶片计数的预测,这是块茎发芽的重要标志。在Frito Lay 1879(FL1879)和Russet Norkotah(R.Norkotah)马铃薯品种的整个块茎上进行了电子和实验室测量。采用区间偏最小二乘(IPLS)技术提取两个系统的最有效波长。使用偏最小二乘回归(PLSR)进行线性回归,并使用四重交叉验证选择最佳校准模型。然后使用单独的测试数据集获得预测模型。与从单个系统的模型获得的预测结果相比,预测结果得到了增强。 FL1879和R.Norkotah的相关系数(性能与偏差之比,或r(RPD))的值分别为0.95(3.01)和0.9s6(3.55),这表明可行的提高了6.7%(35.6) FL1879和R.Norkotah分别为%)和24.7%(136.7%)。拟议的研究显示了构建快速,无创且准确的系统或设备的可能性,该系统或设备需要最少的样品制备或不需要样品制备即可追踪存储的马铃薯块茎的发芽活性。

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