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An object-based conceptual framework and computational method for representing and analyzing coastal morphological changes

机译:基于对象的概念框架和计算方法,用于表示和分析沿海形态变化

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This article presents an object-based conceptual framework and numerical algorithms for representing and analyzing coastal morphological and volumetric changes based on repeat airborne light detection and ranging (LiDAR) surveys. This method identifies and delineates individual zones of erosion and deposition as discrete objects. The explicit object representation of erosion and deposition zones is consistent with the perception and cognition of human analysts and geomorphologists. The extracted objects provide ontological and epistemological foundation to localize, represent, and interpret erosion and deposition patches for better coastal resource management and erosion control. The discrete objects are much better information carriers than the grid cells in the field-based representation of source data. A set of spatial and volumetric attributes are derived to characterize and quantify location, area, shape, orientation, depth, volume, and other properties of erosion and deposition objects. Compared with the conventional cell-by-cell differencing approaches, our object-based method gives a concise and high-level representation of information and knowledge about coastal morphological dynamics. The derived attributes enable the discrimination of true morphological changes from artifacts caused by data noise and processing errors. Furthermore, the concise object representation of erosion and deposition zones facilitates overlay analysis in conjunction with other GIS data layers for understanding the causes and impacts of morphological and volumetric changes. We have implemented a software tool for our object-based morphological analysis, which will be freely available for the public. An example is used to demonstrate the utility and effectiveness of this new method.
机译:本文提出了一个基于对象的概念框架和数值算法,用于基于重复机载光检测和测距(LiDAR)调查来表示和分析沿海形态和体积变化。该方法将腐蚀和沉积的各个区域标识为划定的对象。侵蚀和沉积带的明确对象表示与人类分析家和地貌学家的感知和认知一致。提取的对象为定位,表示和解释侵蚀和沉积斑块提供了本体和认识论基础,以便更好地进行海岸资源管理和侵蚀控制。在源数据的基于字段的表示中,离散对象比网格单元是更好的信息载体。导出了一组空间和体积属性,以表征和量化侵蚀和沉积物体的位置,面积,形状,方向,深度,体积和其他属性。与传统的逐个细胞区分方法相比,我们基于对象的方法给出了有关沿海形态动力学的信息和知识的简洁而高级的表示。派生的属性可以区分由数据噪声和处理错误引起的伪影的真实形态变化。此外,侵蚀和沉积区域的简洁对象表示法有助于与其他GIS数据层一起进行叠加分析,以了解形态和体积变化的原因和影响。我们已经为基于对象的形态分析实现了一个软件工具,该工具将免费提供给公众。通过一个例子来证明这种新方法的实用性和有效性。

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