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首页> 外文期刊>Journal of circuits, systems and computers >A Review of Geological Applications of High-Spatial- Resolution Remote Sensing Data
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A Review of Geological Applications of High-Spatial- Resolution Remote Sensing Data

机译:高空间分辨率遥感数据的地质应用综述

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Geologists employ high-spatial-resolution (HR) remote sensing (RS) data for many diverse applications as they effectively reflect detailed geological information, enabling high-quality and efficient geological surveys. Applications of HR RS data to geological and related fields have grown recently. HR optical remote sensing data are widely used in geological hazard assessment, seismic monitoring, mineral exploitation, glacier monitoring, and mineral information extraction due to high accuracy and clear object features. By reviewing these applications, we can better understand the results of previous studies and more effectively use the latest data and methods to efficiently extract key geological information. Compared with optical satellite images, synthetic-aperture radar (SAR) images are stereoscopic and exhibit clear relief, strong performance, and good detection of terrain, landforms, and other information. SAR images have been applied to seismic mechanism research, volcanic monitoring, topographic deformation, and fault analysis. Furthermore, a multi-standard maturity analysis of the geological applications of HR images reveals that optical remote sensing data are superior to radar data for mining, geological disaster, lithologic, and volcanic applications, but inferior for earthquake, glacial, and fault applications. Therefore, it is necessary for geological remote sensing research to be truly multi-disciplinary or inter-disciplinary, ensuring more detailed and efficient surveys through cross-linking with other disciplines. Moreover, the recent application of deep learning technology to remote sensing data extraction has improved the capabilities of automatic processing and data analysis with HR images.
机译:地质学家采用高空间分辨率(HR)遥感(RS)数据,因为它们有效地反映了详细的地质信息,从而实现了高质量和高效的地质调查。 HR RS数据对地质和相关领域的应用最近已经增长。 HR光学遥感数据广泛应用于地质危害评估,地震监测,矿物开采,冰川监测和矿物信息提取,由于高精度和清晰的物体特征。通过审查这些应用程序,我们可以更好地了解先前研究的结果,更有效地使用最新的数据和方法,以有效提取关键地质信息。与光学卫星图像相比,合成孔径雷达(SAR)图像是立体性的,表现出明显的浮雕,强烈的性能,良好地检测地形,地形和其他信息。 SAR图像已应用于地震机制研究,火山监测,地形变形和故障分析。此外,HR图像的地质应用的多标准成熟度分析显示,光学遥感数据优于采矿,地质灾害,岩性和火山应用的雷达数据,但地震,冰川和故障应用劣等。因此,地质遥感研究是真正的多学科或跨学科,确保通过与其他学科交联更详细和有效的调查。此外,最近对遥感数据提取的深度学习技术应用提高了利用HR图像的自动处理和数据分析的能力。

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