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Nitrogen stress measurement of rape based on charged coupled device imaging sensor

机译:基于带电耦合器件成像传感器的强奸氮应力测量

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Site-specific variable nitrogen application is one of the major precision crop production management operations. To obtain sufficient crop nitrogen stress information is essential for achieving effective site-specific nitrogen applications. This paper presents the development of a multi-spectral nitrogen deficiency sensor, which uses three channels (green, red, near-infrared) of crop images to determine nitrogen level of the rape. This sensor assess the nitrogen stress by means of the estimated SPAD value of the rape based on rape canopy reflectance sensed using three channels (green, red, near-infrared) of the multispectral camera. The core of this investigation is the calibration methods between the multi-spectral references and the nitrogen levels in crops measured using a SPAD 502 chlorophyll meter. Based on the results obtained from this study (The correlation was 0.89.), it can be concluded that a multi-spectral CCD camera can provide sufficient information to perform reasonable SPAD values estimation on-the-go during field operations.
机译:特定于站点的可变氮应用是主要的精密作物生产管理运营之一。为了获得足够的作物氮气胁迫,对于实现有效的位点特异性氮应用至关重要。本文介绍了多光谱氮气缺乏传感器的开发,它使用三个通道(绿色,红色,近红外)的裁剪图像来确定强奸的氮水平。该传感器通过基于使用多光谱相机的三个通道(绿色,红色,近红外线)感测的强奸冠层反射率来评估氮气胁迫。该研究的核心是使用SPAD 502叶绿素测量的多光谱参考和氮水平之间的校准方法。基于本研究获得的结果(相关性为0.89。),可以得出结论,多光谱CCD相机可以在现场操作期间提供足够的信息来执行可接受的SPAD值估计。

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