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Development of drought index using drone imagery in South Korea

机译:韩国无人机图像的开发干旱指数

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South Korea's paddy field agriculture is exposed to major risks due to the water shortage during the irrigation period lasting three years. Especially the conditions of the west and southern coastal areas are serious. For this purpose, it should be considered to adopt sophisticated technology to ensure adequate water management methods. Droughts cause severe human and economic damage and appropriate drought monitoring is important to reduce serious damage. In order to solve such a drought problem, it should be considered to adopt advanced monitoring technology to exploit appropriate water management methods by utilizing new technologies such as ICT and drone. Drought indices using drone image data are one of the effective methods for the paddy field drought monitoring. Drought indices which can evaluate spatial and temporal drought conditions are required for detailed paddy field drought monitoring. The main objective of this study was to develop a drought index using RGB and NDVI (normalized difference vegetation index). These indexes were aiming at design and development of an information system which supports paddy rice monitoring, using drone images for spatial evaluation. Blue wavelength band NDVI were used to evaluate the usefulness of drought damage conditions. The results showed that drought damage conditions and NDVI have good correlation in the beginning of the growing season and that Blue band and NDVI are valid for drought monitoring in these periods.
机译:由于灌溉期间持续三年,韩国的稻田农业面临着主要风险。特别是西部和南部沿海地区的条件是严重的。为此,应考虑采用复杂的技术来确保充足的水管理方法。干旱导致严重的人类和经济损失,适当的干旱监测对于减少严重损害很重要。为了解决这样的干旱问题,应该考虑采用先进的监控技术来利用ICT和无人机等新技术利用适当的水管理方法。使用无人机图像数据的干旱指数是稻田干旱监测的有效方法之一。可以评估空间和时间干旱条件的干旱指数对于详细的稻田干旱监测需要。本研究的主要目的是使用RGB和NDVI(归一化差异植被指数)开发干旱指数。这些索引旨在使用无人机图像进行空间评估的无人机图像设计和开发支持水稻监测的信息系统。蓝色波长带NDVI用于评估干旱损伤条件的有用性。结果表明,干旱损害条件和NDVI在生长季节开始时具有良好的相关性,蓝频段和NDVI在这些时期的干旱监测有效。

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