地理与地理信息科学
地理與地理信息科學
지리여지리신식과학
GEOGRAPHY AND TERRITORIAL RESEARCH
2010年
2期
35-37,84
,共4页
GIS%坐标系%空间参考%元数据
GIS%坐標繫%空間參攷%元數據
GIS%좌표계%공간삼고%원수거
GIS%reference frame%spatial reference%metadata
地形图CAD数据是GIS应用与开发的重要数据源,而相应空间参考缺失的情况却并不鲜见.该文分析了CAD数据的特点,并指出在实际应用中对空间参考缺失的处理存在一些不科学的方法;针对我国及地方数字地形图坐标系建立的一般规律,提出了CAD数据空间参考判断及其参数获取的方法:以大地基准及地图投影已知(高斯-克吕格投影)为前提,通过对比实际地图坐标和标准地图坐标在数值上的差异,确定北伪偏移量和东伪偏移量这两个地图空间参考的重要参数;针对不同的CAD地形图数据,用不同的实例说明了该方法的具体实施过程.
地形圖CAD數據是GIS應用與開髮的重要數據源,而相應空間參攷缺失的情況卻併不鮮見.該文分析瞭CAD數據的特點,併指齣在實際應用中對空間參攷缺失的處理存在一些不科學的方法;針對我國及地方數字地形圖坐標繫建立的一般規律,提齣瞭CAD數據空間參攷判斷及其參數穫取的方法:以大地基準及地圖投影已知(高斯-剋呂格投影)為前提,通過對比實際地圖坐標和標準地圖坐標在數值上的差異,確定北偽偏移量和東偽偏移量這兩箇地圖空間參攷的重要參數;針對不同的CAD地形圖數據,用不同的實例說明瞭該方法的具體實施過程.
지형도CAD수거시GIS응용여개발적중요수거원,이상응공간삼고결실적정황각병불선견.해문분석료CAD수거적특점,병지출재실제응용중대공간삼고결실적처리존재일사불과학적방법;침대아국급지방수자지형도좌표계건립적일반규률,제출료CAD수거공간삼고판단급기삼수획취적방법:이대지기준급지도투영이지(고사-극려격투영)위전제,통과대비실제지도좌표화표준지도좌표재수치상적차이,학정북위편이량화동위편이량저량개지도공간삼고적중요삼수;침대불동적CAD지형도수거,용불동적실례설명료해방법적구체실시과정.
Digital topographic map in CAD format is an important data source for applications and development of GIS.However,the spatial reference information,which is the location basis of GIS data,is always neglected in CAD files.In this paper,a method is presented to determine the spatial reference and estimate the mapping parameters of CAD data. Firstly,the features of CAD maps are elaborated and some false means when using them as GIS data are analyzed.Then,the method is proposed based on the assumption that the Geodetic Datum and Map Projection(Gauss Kruger Projection)are already known and by using the criterion of reference frames for topographic maps in China.Considering the diverse coverage regions of the data,two significant map parameters,namely,False Northing and False Easting,are estimated by comparing the actual coordinates to the standard ones.Different types of digital topographic map in CAD format are selected as examples to illustrate the procedures and to assess the accuracy of the method.The results show that this method is efficient and effective in the spatial reference determination and parameters estimation of CAD data.