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Geo-Database Production of Digital Land Use Map Using Remote Sensing and GIS Techniques

机译:使用遥感和GIS技术的数字土地使用地图的地理数据库生产

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With the advent of new technologies, cartographic process, digital map generalization and procedures are being developed to help the production of a digital map. Also, the requirements of different map users for the integration of raster data, like satellite images, in Geographic Information Systems (GIS) have become widely used. The resolution and characteristics of satellite images are useful to visual interpretation and feature analysis. The digital map is a symbolic computer representation of the earth's surface linked to coordinate system, this system allows the users in controlling on the scale when printing maps, which are produced from spatial data sources represented by: scanning the topographic map and processing by many programs like AutoCAD, Google Earth and GPS data. Also, the satellite image can be processed by ERDAS imagine software. The numbering process for maps and aerial images comes within the data collection, input, and processing phase in GIS project. These numbering, and processing operations are not straightforward, but require the processing, adjustment or correction of maps and aerial coordinates. The implementation of a physical data model results in the creation of a database. Depending on its intended purposes, a database may be of different sizes and varying complexity. It may be created and managed manually or by computer, which is called DBMS. Functionally, a "DBMS" is a collection of software which support the process, defining, constructing and manipulating the database for various applications. All features are related to database contained their metadata and spatial data. The databases help greatly to accelerate accessing the data. Instead of waste the time and effort in searching, these data are collecting, storing and analyzing to use it for future studies. The databases facilitated the process of modifying the data and contributed significantly to the necessary updating process, in addition to facilitating the processes of hump
机译:随着新技术的出现,正在开发出来的制图过程,数字地图泛化和程序来帮助生产数字地图。此外,在地理信息系统(GIS)中,用于集成光栅数据的不同地图用户的要求,如卫星图像(GIS)。卫星图像的分辨率和特性对于视觉解释和特征分析非常有用。数字地图是与坐标系相关的地球表面的符号计算机表示,该系统允许用户在打印映射时控制刻度,这些标数由表示的空间数据源产生:扫描地形图和许多程序处理喜欢AutoCAD,Google地球和GPS数据。此外,卫星图像可以由Erdas Imagine软件处理。地图和空中图像的编号过程是GIS项目中的数据收集,输入和处理阶段。这些编号和处理操作并不简单,而是需要地图和空中坐标的处理,调整或校正。物理数据模型的实现导致创建数据库。根据其预期目的,数据库可能具有不同的尺寸和不同的复杂性。它可以手动创建和管理,或者通过计算机进行管理,该计算机被称为DBMS。在功能上,“DBMS”是支持该过程的软件集合,定义,修改和操纵数据库的各种应用程序。所有功能与数据库有关,包含其元数据和空间数据。数据库有助于加速访问数据。这些数据在搜索中而不是浪费搜索时间和精力,而是收集,存储和分析以用于将其用于未来的研究。数据库促进了修改数据的过程,并对必要的更新过程显着贡献,除了促进驼峰的过程之外

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