microproduct/tool/algorithm/algtools/CoordinateTransformation.py

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# -*- encoding: utf-8 -*-
# code from https://blog.csdn.net/theonegis/article/details/54427906
from osgeo import gdal
from osgeo import osr
import numpy as np
def getSRSPair(dataset):
"""
获得给定数据的投影参考系和地理参考系
:param dataset: GDAL地理数据
:return: 投影参考系和地理参考系
"""
prosrs = osr.SpatialReference()
prosrs.ImportFromWkt(dataset.GetProjection())
geosrs = prosrs.CloneGeogCS()
return prosrs, geosrs
def geo2lonlat(dataset, x, y):
"""
将投影坐标转为经纬度坐标(具体的投影坐标系由给定数据确定)
:param dataset: GDAL地理数据
:param x: 投影坐标x
:param y: 投影坐标y
:return: 投影坐标(x, y)对应的经纬度坐标(lon, lat)
"""
prosrs, geosrs = getSRSPair(dataset)
ct = osr.CoordinateTransformation(prosrs, geosrs)
coords = ct.TransformPoint(x, y)
return coords[:2]
def lonlat2geo(dataset, lon, lat):
"""
将经纬度坐标转为投影坐标(具体的投影坐标系由给定数据确定)
:param dataset: GDAL地理数据
:param lon: 地理坐标lon经度
:param lat: 地理坐标lat纬度
:return: 经纬度坐标(lon, lat)对应的投影坐标
"""
prosrs, geosrs = getSRSPair(dataset)
ct = osr.CoordinateTransformation(geosrs, prosrs)
coords = ct.TransformPoint(lat, lon)
return coords[:2]
def imagexy2geo(dataset, row, col):
"""
根据GDAL的六参数模型将影像图上坐标行列号转为投影坐标或地理坐标根据具体数据的坐标系统转换
:param dataset: GDAL地理数据
:param row: 像素的行号
:param col: 像素的列号
:return: 行列号(row, col)对应的投影坐标或地理坐标(x, y)
"""
trans = dataset.GetGeoTransform()
px = trans[0] + col * trans[1] + row * trans[2]
py = trans[3] + col * trans[4] + row * trans[5]
return px, py
def geo2imagexy(dataset, x, y):
"""
根据GDAL的六 参数模型将给定的投影或地理坐标转为影像图上坐标(行列号)
:param dataset: GDAL地理数据
:param x: 投影或地理坐标x
:param y: 投影或地理坐标y
:return: 影坐标或地理坐标(x, y)对应的影像图上行列号(col, row)
"""
trans = dataset.GetGeoTransform()
a = np.array([[trans[1], trans[2]], [trans[4], trans[5]]])
b = np.array([x - trans[0], y - trans[3]])
return np.linalg.solve(a, b) # 使用numpy的linalg.solve进行二元一次方程的求解
def test1():
gdal.AllRegister()
tif = 'D:/DATA/testdata/GLCFCS30_E110N25.tif'
# dataset = gdal.Open(r"D:\\DATA\\雷达测试\\GaoFen3_20200528_HH_DB.tif")
dataset = gdal.Open(tif)
print('数据投影:')
print(dataset.GetProjection())
print('数据的大小(行,列):')
print('(%s %s)' % (dataset.RasterYSize, dataset.RasterXSize))
x = 793214.118
y = 2485865.527
lon = 113.84897082317516
lat = 22.453998686022448
row = 24576
col = 22540
print('图上坐标 -> 投影坐标:')
coords = imagexy2geo(dataset, row, col)
print('(%s, %s)->(%s, %s)' % (row, col, coords[0], coords[1]))
print('投影坐标 -> 图上坐标:')
coords = geo2imagexy(dataset, x, y)
col = coords[0]
row = coords[1]
print('(%s, %s)->(%s, %s)' % (x, y, coords[0], coords[1]))
print('投影坐标 -> 经纬度:')
coords = geo2lonlat(dataset, x, y)
print('(%s, %s)->(%s, %s)' % (x, y, coords[0], coords[1]))
print('经纬度 -> 投影坐标:')
coords = lonlat2geo(dataset, lon, lat)
print('(%s, %s)->(%s, %s)' % (lon, lat, coords[0], coords[1]))
coords1 = geo2lonlat(dataset, 657974.118, 2633321.527)
print(coords1)
coords2 = geo2lonlat(dataset, 793214.118, 2485865.527)
print(coords2)
pass
# if __name__ == '__main__':
#
# print('done')