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A Precision Evaluation Index System for Remote Sensing Data Sampling Based on Hexagonal Discrete Grids

机译:基于六边形离散网格的遥感数据采样精度评估指标系统

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摘要

With the rapid development of earth observation, satellite navigation, mobile communication, and other technologies, the order of magnitude of the spatial data we acquire and accumulate is increasing, and higher requirements are put forward for the application and storage of spatial data. As a new form of data management, the global discrete grid can be used for the efficient storage and application of large-scale global spatial data, which is a digital multiresolution georeference model that helps to establish a new model of data association and fusion. It is expected to make up for the shortcomings in the organization, processing, and application of current spatial data. There are different types of grid systems according to the grid division form, including global discrete grids with equal latitude and longitude, global discrete grids with variable latitude and longitude, and global discrete grids based on regular polyhedrons. However, there is no accuracy evaluation index system for remote sensing images expressed on the global discrete grid to solve this problem. This paper is dedicated to finding a suitable way to express remote sensing data on discrete grids, as well as establishing a suitable accuracy evaluation system for modeling remote sensing data based on hexagonal grids to evaluate modeling accuracy. The results show that this accuracy evaluation method can evaluate and analyze remote sensing data based on hexagonal grids from multiple levels, and the comprehensive similarity coefficient of the images before and after conversion is greater than 98%, which further proves the availability of the hexagonal-grid-based remote sensing data of remote sensing images. This evaluation method is generally applicable to all raster remote sensing images based on hexagonal grids, and it can be used to evaluate the availability of hexagonal grid images.
机译:随着地球观测的快速发展,卫星导航,移动通信和其他技术,我们获得和累计的空间数据的大小阶数增加,提出了更高的要求,用于空间数据的应用和存储。作为一种新的数据管理形式,全局离散网格可用于大规模全局空间数据的有效存储和应用,这是一种数字多分辨率地理调整模型,有助于建立新的数据关联和融合模型。预计将弥补当前空间数据的组织,处理和应用中的缺点。根据网格分割形式存在不同类型的网格系统,包括具有相同的纬度和经度的全局离散网格,全局离散网格,具有可变纬度和经度的全局离散网格,以及基于常规多面体的全局离散网格。然而,在全球离散网格上表达的遥感图像没有准确评估指标系统,以解决这个问题。本文致力于寻找一种合适的方法来在离散网格上表达遥感数据,以及建立合适的精度评估系统,用于基于六边形网格建模遥感数据以评估建模精度。结果表明,该精度评估方法可以根据来自多个级别的六边形网格进行评估和分析遥感数据,并且转换前后图像的综合相似性系数大于98%,这进一步证明了六边形的可用性 - 基于网格的遥感图像遥感数据。该评估方法通常适用于基于六边形网格的所有光栅遥感图像,并且可用于评估六边形网格图像的可用性。

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