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Detection of coastal landforms in a deltaic area using a multi-scale object-based classification method

机译:使用基于多尺度对象的分类方法检测红细胞区域的沿海地貌

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Coastal landforms play an important role in protecting deltaic areas from erosion due to the action of waves. However, landforms in the deltas are dynamic and vulnerable to changes due to the effect of natural disasters like floods and cyclones. Automatic detection of dynamic landforms from satellite data can provide important inputs for effective coastal zone management. In this study, we developed an Object-Based Image Analysis (OBIA) technique to identify and map landforms in the Krishna delta, east coast of India using Resourcesat-2 LISS-IV multispectral image (5.8 m) and digital elevation model (DEM) (4 m). Since landforms are represented at multiple scales, the plateau objective function method was used to select appropriate scales during multiresolution segmentation. Knowledge-based rules in OBIA, using the parameters tone, texture, shape and context derived from satellite images and height from DEM were developed for classification of landforms. A total of 11 landforms (beach, beach ridge, swale, tidal creek, marsh, spit, barrier bar, mangrove, natural levee, channel island and channel bar) were mapped using this approach. High detection accuracy of these landforms indicates that the method developed has the potential for geomorphological mapping of dynamic landforms in low lying deltaic areas.
机译:由于波浪的行动,沿海地貌在保护侵蚀中的侵蚀中发挥着重要作用。然而,由于自然灾害像洪水和旋风等自然灾害的效果,Deltas的地貌是动态的,并且变得易受变化。自动检测卫星数据的动态地貌可以为有效的沿海区域管理提供重要的输入。在这项研究中,我们开发了一种基于对象的图像分析(OBIA)技术,用于使用资源-2 Liss-IV MultiSpectral Image(5.8 M)和数字高度模型(DEM)来识别和映射印度东海岸的地貌。(DEM) (4米)。由于地形在多个尺度上表示,因此使用高原物镜函数方法来选择多分辨率分割期间的适当尺度。开发了基于知识的基于obia的规则,为地貌的分类,开发了使用源自卫星图像的音调,纹理,形状和上下文。使用这种方法映射了共有11个地形(海滩,海滩岭,沼泽,潮汐小溪,沼泽,吐,通道岛和频道酒吧)。这些地形的高检测精度表明,该方法开发的方法具有低洼地区动态地貌的地貌映射的可能性。

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