搜索资源列表
gaosi
- 大地测量中高斯转换,需要自己进行调试 ,学生上传-Geodesy Gaussian conversion, needs its own debugging
gs
- 大地测量学中应用的高斯正反算程序,椭球体上元素投影到平面上-Application of Geodesy positive and negative Gaussian computer program, ellipsoid projected onto the plane on the elements
GeodesyPractice
- 高斯投影正算,高斯投影反算,大地正算,大地反算,大地坐标正反算的源程序。-some programmes about geodesy and geomatics.
Gussfansuan.tar
- 高斯大地主题反算 程序源码,结果正确 ,精度还行-Guss Geodesy programme
GeodesyPractice.tar
- 大地测量实习程序,包括高斯投影,大地主题正反算,距离换算-Geodesy and Geomatics
SlantRangeDistanceToTheGaussian
- 测绘学科,大地测量学,用于地图投影时将斜距归算到高斯距离-Surveying and mapping disciplines, geodesy, map projections for the imputed when the slant range distance to the Gaussian
positive-and-negative-measurement
- 大地测量正反算MFC版本,经纬度与XYZ坐标相互转换-geodesy positive and negative measurement useing MFC
geodesy--old
- 计算高斯投影,对大家编程很重要,是一个很好的参考资料啊-geodesy programme for guass!!hello it is important for gematics engeerning . that is all,very good!it is important for gematics engeerning .
cc
- 大地测量公式,大地测量学中用到的基本公式的自动解算-Geodetic formulas basic formulas used in geodesy automatic solver
gauss_fansuan
- 适用于大地测量和GPS的坐标计算的高斯反算代码,超级实用-Inverse Gaussian code applied to geodesy and GPS coordinates, super practical
test_geodesic
- 测地线又名 测地线又称大地线或短程线,可以定义为空间中两点的局域最短或最长路径。测地线(geodesic)的名字来自于对于地球尺寸与形状的大地测量学(geodesy)。-Aka geodesic geodesic lines or short lines, also known as the earth, the space can be defined as the local minimum or maximum two paths. Geodesic (geodesic) takes it
AngleConversion
- 在地球科学中,角度、弧度、度分秒的转换非常实用,这里提供测地学常用的角度转换-Angle Conversions in Geodesy
DateConversions
- 在地球科学中,日期转换非常实用,这里提供测地学常用的日期转换代码-Date Conversions in Geodesy
Watershed-Algorithm
- 分水岭分割方法,是一种基于拓扑理论的数学形态学的分割方法,其基本思想是把图像看作是测地学上的拓扑地貌,图像中每一点像素的灰度值表示该点的海拔高度,每一个局部极小值及其影响区域称为集水盆,而集水盆的边界则形成分水岭。-Watershed segmentation method is a mathematical morphology segmentation method based on topological theory, the basic idea is the image seen o
gis-SourceCode
- 包括了在c#和VB源代码。利用GPS卫星来确定当前位置,原子时间同步电脑时钟,坐标和投影库,本文将教你如何生成自己的地图。-In part one of this series, I described how to write an interpreter for raw GPS NMEA data. Part two described how to monitor and enforce GPS precision data to develop commercial-quality so