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Analysis of Vegetation Characteristics of Regional Soybean and Paddy Rice Fields Using UAV Images and Farm Maps

机译:使用UAV图像和农场地图区域大豆和水稻田植被特征分析

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Remote sensing(RS)and GIS together provide an efficient and inexpensive way to assess vegetation characteristics and cultivated areas.Precision vegetation mapping provides important information for understanding crop conditions through the calculation of the vegetation index.In this study,a multispectral sensor was installed on an eBee(Sensefly),which is suitable for wide area photography taken by an unmanned aerial vehicle(UAV).UAV imagery acquisition was used to obtain spatial information on soybean and paddy rice cultivation areas in a wider region.The study area selected was Gimje,which is in the southwest of South Korea.Based on the designation of main areas according to the Ministry of Agriculture,Food,and Rural Afhirs(MAFRA),the area was selected considering the cultivation area,production volume,number of farm households,and self-sufficiency ratio.The main producing areas are soybean cultivation areas defined as a city or county with a cultivation area of 30-1500 ha or more,respectively.The identification of the cultivation area of soybeans was made based on images taken in early September,when the growth characteristics of soybeans were clearly distinguished from other crops.The accuracy of the soybean and paddy rice cultivation area identification was improved by using the farm map(FM)prepared by the MAFRA in South Korea.The NDVI was analyzed based on the two periods of high growth activity of soybean and paddy rice.The accuracy of the cultivated area was improved by using the UAV images and the FM prepared by the MAFRA.As a result,this study shows that UAV images can be used more effectively by linking GIS with the FM as a basic map.
机译:遥感(RS)和地理信息系统一起提供一种有效的和廉价的方式来评估植被特征和栽培areas.Precision植被映射提供通过植被index.In本研究的计算理解作物状况的重要信息,多光谱传感器是安装在一个eBee(Sensefly),其适合于由无人驾驶飞行器采取广域摄影(UAV).UAV图像采集用于获得对大豆和水稻栽培区域在选定的更广泛的研究region.The区域的空间信息是金堤,这是在按照农业,食品和农村Afhirs部(MAFRA)主要区域的指定西南部南Korea.Based,被选择的区域考虑种植面积,产量,农户数,和自给自足ratio.The主产区或定义为一个城市或县,30-1500公顷的种植面积大豆的种植面积多,资源大豆的栽培面积的pectively.The识别是基于在九月初拍摄的图像制成时的大豆的生长特性清楚的大豆和水稻栽培区域识别其他crops.The精度区分是通过使用农场改善映射(FM)制备由MAFRA南Korea.The NDVI基于大豆和耕地面积的稻田rice.The精度的高生长活性的两个时期进行了改进,通过使用UAV图像进行分析,FM制备由MAFRA.As结果,这项研究表明,无人机图像可以通过与FM的基本地图链接GIS更有效的利用。

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