i.tasscap.py 4.5 KB

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  1. #!/usr/bin/env python
  2. #
  3. ############################################################################
  4. #
  5. # MODULE: i.tasscap
  6. # AUTHOR(S): Markus Neteler. neteler itc.it
  7. # Converted to Python by Glynn Clements
  8. # PURPOSE: At-satellite reflectance based tasseled cap transformation.
  9. # COPYRIGHT: (C) 1997-2004,2008 by the GRASS Development Team
  10. #
  11. # This program is free software under the GNU General Public
  12. # License (>=v2). Read the file COPYING that comes with GRASS
  13. # for details.
  14. # TODO: Check if MODIS Tasseled Cap makes sense to be added
  15. # http://ieeexplore.ieee.org/xpls/abs_all.jsp?arnumber=1025776
  16. #############################################################################
  17. # References:
  18. # LANDSAT-4/LANDSAT-5:
  19. # script based on i.tasscap.tm4 from Dr. Agustin Lobo - alobo@ija.csic.es
  20. # TC-factor changed to CRIST et al. 1986, p.1467 (Markus Neteler 1/99)
  21. # Proc. IGARSS 1986
  22. #
  23. # LANDSAT-7:
  24. # TASSCAP factors cited from:
  25. # DERIVATION OF A TASSELED CAP TRANSFORMATION BASED ON LANDSAT 7 AT-SATELLITE REFLECTANCE
  26. # Chengquan Huang, Bruce Wylie, Limin Yang, Collin Homer and Gregory Zylstra Raytheon ITSS,
  27. # USGS EROS Data Center Sioux Falls, SD 57198, USA
  28. # http://landcover.usgs.gov/pdf/tasseled.pdf
  29. #
  30. # This is published as well in INT. J. OF RS, 2002, VOL 23, NO. 8, 1741-1748.
  31. # Compare discussion:
  32. # http://adis.cesnet.cz/cgi-bin/lwgate/IMAGRS-L/archives/imagrs-l.log0211/date/article-14.html
  33. #############################################################################
  34. #
  35. #%Module
  36. #% description: Performs Tasseled Cap (Kauth Thomas) transformation for LANDSAT-TM data.
  37. #% keywords: imagery
  38. #% keywords: transformation
  39. #%end
  40. #%flag
  41. #% key: 4
  42. #% description: Use transformation rules for LANDSAT-4
  43. #%end
  44. #%flag
  45. #% key: 5
  46. #% description: Use transformation rules for LANDSAT-5
  47. #%end
  48. #%flag
  49. #% key: 7
  50. #% description: Use transformation rules for LANDSAT-7
  51. #%end
  52. #%option G_OPT_R_INPUT
  53. #% key: band1
  54. #% description: Name of input raster map (LANDSAT channel 1)
  55. #%end
  56. #%option G_OPT_R_INPUT
  57. #% key: band2
  58. #% description: Name of input raster map (LANDSAT channel 2)
  59. #%end
  60. #%option G_OPT_R_INPUT
  61. #% key: band3
  62. #% description: Name of input raster map (LANDSAT channel 3)
  63. #%end
  64. #%option G_OPT_R_INPUT
  65. #% key: band4
  66. #% description: Name of input raster map (LANDSAT channel 4)
  67. #%end
  68. #%option G_OPT_R_INPUT
  69. #% key: band5
  70. #% description: Name of input raster map (LANDSAT channel 5)
  71. #%end
  72. #%option G_OPT_R_INPUT
  73. #% key: band7
  74. #% description: Name of input raster map (LANDSAT channel 7)
  75. #%end
  76. #%option
  77. #% key: output_prefix
  78. #% type: string
  79. #% description: Prefix for output raster maps
  80. #% required: yes
  81. #%end
  82. import sys
  83. import os
  84. import grass.script as grass
  85. parms = [[( 0.3037, 0.2793, 0.4743, 0.5585, 0.5082, 0.1863),
  86. (-0.2848,-0.2435,-0.5435, 0.7243, 0.0840,-0.1800),
  87. ( 0.1509, 0.1973, 0.3279, 0.3406,-0.7112,-0.4572)],
  88. [( 0.2909, 0.2493, 0.4806, 0.5568, 0.4438, 0.1706, 10.3695),
  89. (-0.2728,-0.2174,-0.5508, 0.7221, 0.0733,-0.1648, -0.7310),
  90. ( 0.1446, 0.1761, 0.3322, 0.3396,-0.6210,-0.4186, -3.3828),
  91. ( 0.8461,-0.0731,-0.4640,-0.0032,-0.0492,-0.0119, 0.7879)],
  92. [( 0.3561, 0.3972, 0.3904, 0.6966, 0.2286, 0.1596),
  93. (-0.3344,-0.3544,-0.4556, 0.6966,-0.0242,-0.2630),
  94. ( 0.2626, 0.2141, 0.0926, 0.0656,-0.7629,-0.5388),
  95. ( 0.0805,-0.0498, 0.1950,-0.1327, 0.5752,-0.7775)]]
  96. ordinals = ["first", "second", "third", "fourth"]
  97. names = ["Brightness", "Greenness", "Wetness", "Haze"]
  98. def calc1(out, bands, k1, k2, k3, k4, k5, k7, k0 = 0):
  99. grass.mapcalc(
  100. "$out = $k1 * $band1 + $k2 * $band2 + $k3 * $band3 + $k4 * $band4 + $k5 * $band5 + $k7 * $band7 + $k0",
  101. out = out, k1 = k1, k2 = k2, k3 = k3, k4 = k4, k5 = k5, k7 = k7, k0 = k0, **bands)
  102. grass.run_command('r.colors', map = out, color = 'grey')
  103. def calcN(options, i, n):
  104. outpre = options['output_prefix']
  105. grass.message(_("LANDSAT-%d...") % n)
  106. for j, p in enumerate(parms[i]):
  107. out = "%s.%d" % (outpre, j + 1)
  108. ord = ordinals[j]
  109. if n == 4:
  110. name = ''
  111. else:
  112. name = " (%s)" % names[j]
  113. grass.message(_("Calculating %s TC component %s%s ...") % (ord, out, name))
  114. calc1(out, options, *p)
  115. def main():
  116. flag4 = flags['4']
  117. flag5 = flags['5']
  118. flag7 = flags['7']
  119. if (flag4 and flag5) or (flag4 and flag7) or (flag5 and flag7):
  120. grass.fatal(_("Select only one flag"))
  121. if flag4:
  122. calcN(options, 0, 4)
  123. elif flag5:
  124. calcN(options, 1, 5)
  125. elif flag7:
  126. calcN(options, 2, 7)
  127. else:
  128. grass.fatal(_("Select LANDSAT satellite by flag!"))
  129. grass.message(_("Tasseled Cap components calculated."))
  130. if __name__ == "__main__":
  131. options, flags = grass.parser()
  132. main()