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RESEARCH ON ESTIMATION CROP PLANTING AREA BY INTEGRATING THE OPTICAL AND MICROWAVE REMOTE SENSING DATA

机译:通过集成光学和微波遥感数据估算作物种植区的研究

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Considering the problem in monitoring agricultural condition in the semi-arid areas of Northwest of China, we propose a new method for estimation of crop planting area, using the single phase optical and microwave remote sensing data collaboratively, which have demonstrated their respective advantages in the extraction of surface features.In the model, the ASAR backscatter coefficient is normalized by the incident angle at first, then the classifier based on Bayesian network is developed, and the VV, VH polarization of ASAR and all the 7 TM bands are taken as the input of the classifier to get the class labels of each pixel of the images.Moreover the crop planting areas can be extracted by the classification results.At last, the model is validated for the necessities of normalization by the incident angle and integration of TM and ASAR respectively.It results that the estimation accuracy of crop planting area of corn and other crops garden are 98.47% and 78.25% respectively using the proposed method, with an improvement of estimation accuracy of about 3.28% and 4.18% relative to single TM classification.These illustrate that synthesis of optical and microwave remote sensing data is efficient and potential in estimation crop planting area.
机译:考虑到在中国西北半干旱地区监测农业条件问题,我们提出了一种估计作物种植区的新方法,使用单相光学和微波遥感数据协作,这已经证明了它们各自的优势曲面特征的提取。在模型中,ASAR反向散射系数首先由入射角归一化,然后开发了基于贝叶斯网络的分类器,以及ASAR的VV,VH极化和所有7个TM频段输入分类器以获取图像的每个像素的类标签。overs的裁剪种植区域可以通过分类结果提取。最后,验证模型以通过入射角和Tm的集成来验证归一化的必要性。 Asar分别是玉米和其他作物园林作物种植面积的估计准确性,分别使用P分别为98.47%和78.25%牵引方法,提高估计精度约为单TM分类约3.28%和4.18%。该词条说明了光学和微波遥感数据的合成是有效的,估计作物种植面积有效且潜力。

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