...
首页> 外文期刊>Geocarto international >Spectral information analysis of image fusion data for remote sensing applications
【24h】

Spectral information analysis of image fusion data for remote sensing applications

机译:遥感影像融合数据的光谱信息分析

获取原文
获取原文并翻译 | 示例

摘要

Fusion of images with different spatial resolutions has the capability of improving visualization and spatial resolution and enhancing structural/textural information of the involved images, while preserving the spectral information in multi-spectral (MS) images. In this paper, various fusion methods have been examined in the data fusion of GeoEye-1 and QuickBird imagery, followed by subsequent image control. The effectiveness of five techniques, the Gram-Schmidt (GS), high-pass filtering (HPF), modified intensity-hue-saturation (M-IHS), fast Fourier transform (FFT)-enhanced IHS (FFT-E) and wavelet principal component analysis (W-PCA), has been evaluated through visual inspection, histogram analysis and correlation analysis. Also, image quality information is assessed by means of global spectral information (relative dimensionless global error, relative average spectral error), spectral distortion (peak signal-to-noise ratio), spectral (bias, root means square error) and spatial information (mean, standard deviation) of the fused images. In addition, the extraction of object boundary is tested and evaluated using Canny edge detection. The results show that most of the image fusion techniques preserve spectral information of original image, but occasionally with some spectral distortion. It has been found that the GS method, followed by HPF, yields the best information quality in the fused image, suitable for improving visual interpretation and data quality from the viewpoint of remote sensing applications.
机译:具有不同空间分辨率的图像的融合具有改善可视化和空间分辨率并增强所涉及图像的结构/纹理信息的能力,同时保留多光谱(MS)图像中的光谱信息。本文在GeoEye-1和QuickBird影像的数据融合中研究了多种融合方法,随后进行了图像控制。五个技术的有效性,即Gram-Schmidt(GS),高通滤波(HPF),改进的强度色相饱和度(M-IHS),快速傅里叶变换(FFT)增强的IHS(FFT-E)和小波主成分分析(W-PCA)已通过外观检查,直方图分析和相关分析进行了评估。同样,图像质量信息通过全局光谱信息(相对无量纲全局误差,相对平均光谱误差),光谱失真(峰值信噪比),光谱(偏置,均方根误差)和空间信息(均值,标准偏差)。此外,使用Canny边缘检测对对象边界的提取进行测试和评估。结果表明,大多数图像融合技术保留了原始图像的光谱信息,但偶尔会出现一些光谱失真。已经发现,GS方法,接着是HPF,可以在融合图像中产生最佳的信息质量,从遥感应用的角度来看,适合于改善视觉解释和数据质量。

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