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Ontologies to interpret remote sensing images: why do we need them?

机译:解释遥感图像的本体:我们为什么需要它们?

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摘要

The development of new sensors and easier access to remote sensing data are significantly transforming both the theory and practice of remote sensing. Although data-driven approaches based on innovative algorithms and enhanced computing capacities are gaining importance to process big Earth Observation data, the development of knowledge-driven approaches is still considered by the remote sensing community to be one of the most important directions of their research. In this context, the future of remote sensing science should be supported by knowledge representation techniques such as ontologies. However, ontology-based remote sensing applications still have difficulty capturing the attention of remote sensing experts. This is mainly because of the gap between remote sensing experts' expectations of ontologies and their real possible contribution to remote sensing. This paper provides insights to help reduce this gap. To this end, the conceptual limitations of the knowledge-driven approaches currently used in remote sensing science are clarified first. Then, the different modes of definition of geographic concepts, their duality, vagueness and ambiguity, and the sensory and semantic gaps are discussed in order to explain why ontologies can help address these limitations. In particular, this paper focuses on the capacity of ontologies to represent both symbolic and numeric knowledge, to reason based on cognitive semantics and to share knowledge on the interpretation of remote sensing images. Finally, a few recommendations are provided for remote sensing experts to comprehend the advantages of ontologies in interpreting satellite images.
机译:新传感器的开发和更容易获得遥感数据的访问都是显着的,在遥感的理论和实践中显着变化。虽然基于创新算法和增强的计算能力的数据驱动方法正在增长处理大地球观测数据的重要性,但遥感社区仍然认为知识驱动方法的发展成为他们研究中最重要的方向之一。在这种情况下,应由理论表示技术(如本体)支持遥感科学的未来。然而,基于本体的遥感应用仍然难以捕捉遥感专家的注意。这主要是因为遥感专家对本体期望的差距及其对遥感的真正可能的贡献。本文提供有助于减少这种差距的见解。为此,首先阐明了目前用于遥感科学的知识驱动方法的概念局限性。然后,讨论了地理概念的不同定义模式,它们的二元性,模糊和歧义以及感官和语义差距,以解释为什么本体可以帮助解决这些限制。特别是,本文侧重于本体论代表符号和数字知识的能力,以及基于认知语义的原因,并分享关于遥感图像解释的知识。最后,为遥感专家提供了一些建议,以了解本体在解释卫星图像方面的优势。

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