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)
