遥感影像判读,recognition of remote sensing images
1)recognition of remote sensing images遥感影像判读
2)Remote Sensing and Photography Interpretation遥感与像片判读
3)RS interpretation遥感判读
1.This paper aims at improving mapping methods of RS interpretation point thematic map in the sixth five CFI.旨在改进“六五”连清期间遥感专题图的点块状成图方法,以国家林业局发布的《第七次国家森林资源连续清查遥感成图方法》为指引,以方法优化为目的,通过VBA编程将遥感判读点转化为判读参考面,参考物的数量可减少十倍,变完全判读为判读修正,大大提高了成图效率,通过符合率的计算确保面判读的类别比例关系,提高了遥感专题图的美观度和可视性。
4)image interpretation影像判读
5)remote sensing images遥感影像
1.Dynamic monitoring of land use space-time changes based on remote sensing images comprehension model——taking Longkou city for example;基于遥感影像理解模型的土地利用时空变化监测——以龙口市为例
2.The methods of ATM location selection based on GIS and remote sensing images;基于GIS与遥感影像的银行ATM机网点选址方法研究
3.Improvement of the OPTA algorithm and its application in remote sensing images thinning;改进的OPTA算法在遥感影像细化中的应用
英文短句/例句

1.The Study on Pixel-Level Data Fusion for Remote Sensing Images of Medium and High Resolution;像素级中高分辨率遥感影像融合研究
2.Unmixing of Remote Sensing Images Based on Support Vector Machines and Pairwise Coupling基于SVM和PWC的遥感影像混合像元分解
3.Theoretical Framework of Optical Remotely Sensed Image Fusion光学遥感影像像素级融合的理论框架
4.Specification for making photoplan of remote sensingGB15968-1995遥感影像平面图制作规范
5.A New RS Image Fusion Method Based on Feature一种基于特征的遥感影像融合新方法
6.The Mapping Accuracy of Satellite Imagery Block Adjustment卫星遥感影像的区域网平差成图精度
7.Integrative Analysis and Evaluation of the Interpretation Features in Remote Sensing Image;遥感影像解译特征的综合分析与评价
8.Research on Remote Sensing Image Correction Model in Region of Lack Control Points;稀少控制点下遥感影像纠正模型研究
9.Remote Sensing Image Texture Feature Extraction and Quantitative Analysis;遥感影像纹理特征提取及其定量分析
10.Studying the Martial Object Detection for High-resolution Remote Sensing Images;高分辩率遥感影像军用目标检测研究
11.Study of Remote Sensing Image Database Based on Oracle GeoRaster;基于ORACLE GeoRaster的遥感影像库技术研究
12.Research on the Line-Based Registration of Multi-Source Remote Sensing Imagery;基于线特征的多源遥感影像配准研究
13.Comparison and Analysis on Remote Sensing Data Fusion Methods;遥感影像数据融合方法的比较和分析
14.Application of Decision Tree Technology for Image Classification Using Remote Sensing Data;基于决策树技术的遥感影像分类研究
15.The Establish of Remote Sensing Image Database Base on Oracle;基于Oracle的遥感影像数据库的建立
16.Research on Back-propagation Neural Network-based Remote Sensing Image Classification;基于BP神经网络的遥感影像分类研究
17.The Research on Remote Sensing Image Compression Based on JPEG2000;基于JPEG2000的遥感影像压缩研究
18.Segmentation Algorithm for Road in High Resolution Remote Sensing Images;高分辨率遥感影像道路分割算法研究
相关短句/例句

Remote Sensing and Photography Interpretation遥感与像片判读
3)RS interpretation遥感判读
1.This paper aims at improving mapping methods of RS interpretation point thematic map in the sixth five CFI.旨在改进“六五”连清期间遥感专题图的点块状成图方法,以国家林业局发布的《第七次国家森林资源连续清查遥感成图方法》为指引,以方法优化为目的,通过VBA编程将遥感判读点转化为判读参考面,参考物的数量可减少十倍,变完全判读为判读修正,大大提高了成图效率,通过符合率的计算确保面判读的类别比例关系,提高了遥感专题图的美观度和可视性。
4)image interpretation影像判读
5)remote sensing images遥感影像
1.Dynamic monitoring of land use space-time changes based on remote sensing images comprehension model——taking Longkou city for example;基于遥感影像理解模型的土地利用时空变化监测——以龙口市为例
2.The methods of ATM location selection based on GIS and remote sensing images;基于GIS与遥感影像的银行ATM机网点选址方法研究
3.Improvement of the OPTA algorithm and its application in remote sensing images thinning;改进的OPTA算法在遥感影像细化中的应用
6)remote sensing image遥感影像
1.New discovery in study of remote sensing image characteristics at sandstone-type uranium deposits in China and its important significance;中国砂岩型铀矿区遥感影像特征研究的新发现及其重要意义
2.Study on multi-step classification of remote sensing image based on LBV transformation;基于LBV变换的遥感影像多步骤分类法研究
3.Web-based releasing and implementation of remote sensing image data of Xiaogan city;孝感市遥感影像数据的Web发布与实现
延伸阅读

地貌判读地貌判读geomorphy interpretation  dimao Pandu地貌判读(geomorphy inter-pretation)利用军用地形图识别地貌特征,并判断其利用价值的工作。其内容包括地貌形态和地面点的高程、高差及地面坡度的判定,通常需利用大于1:10万比例尺地形图进行判读。地貌判读是识图用图的重要内容,它对于了解战区地形,计算人员、车辆的可通行程度,确定火力配系等都有一定的作用。地貌的形态(山顶、凹地、山背、山谷、鞍部、山脊等),可根据等高线和示坡线进行判读。等高线是地面高程相等各点联成的曲线,山顶是封闭的小环圈,有的山顶在环圈外两侧绘有示坡线,环圈内两侧绘有示坡线的为回地。等高线密集,一般为高山或陡坡;等高线稀疏,则为缓坡或小起伏地。示坡线与等高线相连接的一端是上坡方向,另一端指向下坡方向。高程递增为上坡方向,递减为下坡方向。微型地貌(山隘、山洞、岩峰等)、变形地(冲沟、陡崖、陡石山等)和土质特征(如沙地、沙砾地、石块地、盐碱地、龟裂地等),可根据地貌符号及说明注记进行判读。地面点的高程和高差,根据图上的等高距和高程注记、等高线及标高注记进行判读。当地面点在图上有高程注记时,可直接利用;当地面点位于无名高地顶点或鞍部时,先判定下方一条等高线的高程,加上半个或1/4个等高距的米数,即为该点的高程。判定两点的高差,应先分别判出各自的高程,然后两数相减,即得高差。地面坡度的判定,可用坡度尺直接在图上测量等高线,也可按等高线的间隔进行计算。地貌判读主要采用目视判读,辅助判读的工具有放大镜、比规、分度器、计算器等。设置沙盘,能更形象地了解地貌的特征。(陈耀西)