首页> 外文期刊>Geoscience and Remote Sensing, IEEE Transactions on >Fast Subpixel Mapping Algorithms for Subpixel Resolution Change Detection
【24h】

Fast Subpixel Mapping Algorithms for Subpixel Resolution Change Detection

机译:用于子像素分辨率变化检测的快速子像素映射算法

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Due to rapid changes on the Earth's surface, it is important to perform land cover change detection (CD) at a fine spatial and fine temporal resolution. However, remote sensing images with both fine spatial and temporal resolutions are commonly not available or, where available, may be expensive to obtain. This paper attempts to achieve fine spatial and temporal resolution land cover CD with a new computer technology based on subpixel mapping (SPM): The fine spatial resolution land cover maps (FRMs) are first predicted through SPM of the coarse spatial but fine temporal resolution images, and then, subpixel resolution CD is performed by comparison of class labels in the SPM results. For the first time, five fast SPM algorithms, including bilinear interpolation, bicubic interpolation, subpixel/pixel spatial attraction model, Kriging, and radial basis function interpolation methods, are proposed for subpixel resolution CD. The auxiliary information from the known FRM on one date is incorporated in SPM of coarse images on other dates to increase the CD accuracy. Based on the five fast SPM algorithms and the availability of the FRM, subpixels for each class are predicted by comparison of the estimated soft class values at the target fine spatial resolution and borrowing information from the FRM. Experiments demonstrate the feasibility of the five SPM algorithms using FRM in subpixel resolution CD. They are fast methods to achieve subpixel resolution CD.
机译:由于地球表面的快速变化,因此必须以良好的空间和精细的时间分辨率执行土地覆被变化检测(CD),这一点很重要。然而,具有精细的空间和时间分辨率的遥感图像通常是不可用的,或者在可获得的情况下,获取图像可能是昂贵的。本文尝试使用基于亚像素映射(SPM)的新计算机技术实现精细的时空分辨率土地覆盖CD:首先通过SPM预测粗略的空间但精细的时间分辨率图像来预测精细的空间分辨率土地覆盖图(FRM) ,然后,通过比较SPM结果中的类别标签来执行亚像素分辨率CD。首次针对子像素分辨率CD提出了五种快速SPM算法,包括双线性插值,双三次插值,子像素/像素空间吸引模型,Kriging和径向基函数插值方法。来自一个日期的已知FRM的辅助信息被合并到其他日期的粗图像的SPM中,以提高CD的准确性。基于五种快速SPM算法和FRM的可用性,可以通过比较目标精细空间分辨率下的估算软类值以及从FRM借用信息来预测每个类的子像素。实验证明了在子像素分辨率CD中使用FRM的五种SPM算法的可行性。它们是获得亚像素分辨率CD的快速方法。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号