低空无人机影像分辨率对冬小麦氮浓度反演的影响
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国家重点研发计划项目(2017YFD02015、2017YFD0201501-05)和国家自然科学基金项目(41871344)


Effect of Low-altitude UAV Image Resolution on Inversion of Winter Wheat Nitrogen Concentration
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    摘要:

    针对目前基于无人机遥感进行作物氮素营养诊断中缺乏规范化的标准来指导无人机应用过程中数据获取与处理的问题,开展了不同分辨率、低空无人机影像对冬小麦植株氮浓度反演影响的研究。在小麦生长的灌浆期,通过设置15、30、50、80m共4种无人机飞行高度,获取了不同分辨率下的无人机多光谱影像,并开展地面试验,采集冬小麦植株氮浓度信息。基于这些数据,提取了不同分辨率下影像的光谱信息和纹理特征,并分别建立光谱信息、纹理特征和光谱信息+纹理特征等反演植株氮浓度的模型。对不同情景下的模型估测效果进行比较,结果表明,影像分辨率在1.00~5.69cm之间变化时,影像光谱信息对小麦植株氮浓度反演影响不大,各情景下建模结果和验证结果差异较小;随着影像分辨率的降低,影像纹理特征对小麦植株氮浓度反演的效果变差;影像光谱信息+纹理特征信息对小麦植株氮浓度反演效果整体随着影像分辨率的提高呈增加趋势,且其反演结果优于单一光谱特征或单一纹理特征的反演效果。

    Abstract:

    In view of the lack of standardized standards in the diagnosis of crop nitrogen nutrition based on UAV remote sensing to guide the data acquisition and processing in the application of drone, low-altitude UAV images with different resolutions were used to invert the nitrogen concentration of winter wheat plants. The research on the impact would provide a reference for the formulation of relevant standards and specifications in the acquisition of UAV images. To this end, a winter wheat water and nitrogen coupling experiment was conducted to obtain wheat plants with different nitrogen nutritional status. During the filling period of wheat growth, multispectral images of UAV with different resolutions were obtained by setting different flying heights of drones such as 15m, 30m, 50m and 80m, and ground experiments were conducted to collect nitrogen concentration information of winter wheat plants. Based on these data, the spectral information and texture features of the images at various resolutions were extracted, and models for inverting the nitrogen concentration of plants were established, such as spectral information, texture features, and spectral information + texture features, respectively. By comparing the estimated effects of the models in different scenarios, the results showed that when the image resolution was changed between 1.00cm and 5.69cm, the spectral information of the image had little effect on the inversion of the nitrogen concentration of the wheat plant. The difference of modeling results and verification results in each scenario was small;the effect of image texture feature on the inversion of wheat plant nitrogen concentration became worse as the image resolution was decreased;the image spectrum information + texture feature information on the inversion effect of wheat plant nitrogen concentration as a whole was increased with the increase of image resolution, and its inversion result was better than the inversion effect of a single spectral feature or a single texture feature.

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贾丹,陈鹏飞.低空无人机影像分辨率对冬小麦氮浓度反演的影响[J].农业机械学报,2020,51(7):164-169. JIA Dan, CHEN Pengfei. Effect of Low-altitude UAV Image Resolution on Inversion of Winter Wheat Nitrogen Concentration[J]. Transactions of the Chinese Society for Agricultural Machinery,2020,51(7):164-169.

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  • 收稿日期:2019-11-05
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  • 在线发布日期: 2020-07-10
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