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利用BG算法提高微波辐射计空间分辨率
引用本文:李靖,王涛,张升伟,姜景山.利用BG算法提高微波辐射计空间分辨率[J].遥感学报,2004,8(5):409-413.
作者姓名:李靖  王涛  张升伟  姜景山
作者单位:中国科学院,空间科学与应用研究中心,国家863计划微波遥感技术实验室,北京,100080
基金项目:国防科技跨行业预研基金支持 (GF编号 :0 0J7 2 9 ZK2 40 1)
摘    要:将BG算法应用于增强微波辐射计空间分辨率 ,BG算法的基本原理是 ,如果测量密度大于仪器本身的分辨率 ,便可找到周围测量点的线性组合而得到一幅较高分辨率的图像 ,此原理同样适合其它遥感仪器。借鉴Stogryn的研究成果 ,在应用BG算法的同时 ,引入可调参数 ,它能够调整空间分辨率和系统的灵敏度之间的约束关系 ,使增强后的图像能够进行折衷处理 ,而不至于因为过分增强分辨率而使图像的斑点噪声增大 ,降低图像的质量。应用BG算法 ,对 2 0、5 0和 90GHz的微波仿真图像进行了图像增强处理 ,结果表明图像分辨率得到了增强 ,空间分辨率提高的倍数依赖于数据采样密度。

关 键 词:BG算法  微波辐射计
文章编号:1007-4619(2004)05-0409-05
收稿时间:2003/2/10 0:00:00
修稿时间:2003年2月10日

Spatial Resolution Enhancement of Microwave Radiometer Using BG Algorithm
LI Jing,WANG Tao,ZHANG Sheng-wei and JIANG Jing-shan.Spatial Resolution Enhancement of Microwave Radiometer Using BG Algorithm[J].Journal of Remote Sensing,2004,8(5):409-413.
Authors:LI Jing  WANG Tao  ZHANG Sheng-wei and JIANG Jing-shan
Institution:Center for Space Science and APPlied Research,Chinese Academy of Sciences,National Microwave Remote Sensing Laboratory,Beijing 100080,China;Center for Space Science and APPlied Research,Chinese Academy of Sciences,National Microwave Remote Sensing Laboratory,Beijing 100080,China;Center for Space Science and APPlied Research,Chinese Academy of Sciences,National Microwave Remote Sensing Laboratory,Beijing 100080,China;Center for Space Science and APPlied Research,Chinese Academy of Sciences,National Microwave Remote Sensing Laboratory,Beijing 100080,China
Abstract:In this paper, a BG algorithm to enhance the spatial resolution of microwave radiometer is introduced. The main principle of the BG algorithm is as follows. A higher resolution image can be obtained using the linear combination of the adjacent measurements if the density of the measurement is larger than that of the instrument. The principle is also suitable for other microwave remote sensing sensors. The tunable parameter referenced from the study of Stogryn is introduced in this paper, which it can balance the tradeoff between the spatial resolution and the system sensitivity, and prevent increasing the flicker noise of the image too serious when high spatial resolution is pursued. Simulated images of microwave radiometer at 20, 50, and 90GHz were enhanced. The rate of spatial resolution enhancement depends on the density of the sampling.
Keywords:BG algorithm  microwave radiometer  
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