首页> 外文期刊>International Journal of Geographical Information Science >Fuzzy ontology-based foreshore identification from digital terrain models and very high-resolution airborne imagery through GEOBIA multi-scale analysis
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Fuzzy ontology-based foreshore identification from digital terrain models and very high-resolution airborne imagery through GEOBIA multi-scale analysis

机译:基于模糊的本体模型的前沿着数字地形模型的识别和通过桥梁多尺度分析的高分辨率空气传播图像

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Coastal mapping provides information for coastal zone protection. Land foreshore-border mapping is important, since it is related to land and property management, raising the need for an automated foreshore delineation framework. This research develops a multi-scale GEographic Object-Based Image Analysis method for foreshore identification from single-date very high-resolution imagery and DTM. Foreshore interpretation criteria were provided by the Greek Cadastral Office; however, they defined the foreshore-borders in an ill-defined manner. Thus, an ontology was designed and implemented to formalize the implicit spectral, geometric, and spatial relationships described in the interpretation criteria, and employ them during identification. The final ontology was delivered after three design phases: specification, conceptualization, and knowledge formalization. Imagery preprocessing through anisotropic morphological levelings reduced undesired spatial detail and noise. A three-level segmentation and ontological classification approach was developed to compute proper objects and assign them into semantic categories. Class definitions were created through fuzzy restrictions, representing value ranges of the employed properties. Evaluation of the extracted foreshore area with human-interpreted reference data showed a 77.9% quality, which was satisfactory. Evaluation by comparing the extracted foreshore border to the reference data showed an average deviation of 2.4 m, which is within Greek Cadastral Office specifications.
机译:沿海映射为沿海区保护提供信息。土地前沿边界映射很重要,因为它与土地和物业管理有关,提高了对自动预订框架的需求。本研究开发了一种用于从单日非常高分辨率图像和DTM的预识的基于多尺度地理对象的图像分析方法。希腊地迪斯特拉特办事处提供了前列讲解标准;但是,它们以恶性定义的方式定义了前沿边界。因此,设计并实现了本体,以形式地形化解释标准中描述的隐式光谱,几何和空间关系,并在识别期间使用它们。在三个设计阶段之后,最终本体进行了:规范,概念化和知识形式化。通过各向异性形态学测量的图像预处理降低了不希望的空间细节和噪音。开发了一种三级分段和本体类别分类方法来计算适当的对象并将其分配到语义类别中。通过模糊限制创建类定义,表示所使用的属性的值范围。用人解释的参考数据评价提取的前院区域显示出77.9%的质量,这是令人满意的。通过将提取的前沿与参考数据进行比较来评估显示2.4米的平均偏差,这是希腊地adastral办公规范。

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