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2 changes: 1 addition & 1 deletion gui/wxpython/rlisetup/g.gui.rlisetup.html
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Expand Up @@ -323,7 +323,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>SEE ALSO</h2>

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2 changes: 1 addition & 1 deletion raster/r.geomorphon/r.geomorphon.html
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Expand Up @@ -187,7 +187,7 @@ <h2>REFERENCES</h2>
<li>Stepinski, T., Jasiewicz, J., 2011, Geomorphons - a new approach to
classification of landform, in : Eds: Hengl, T., Evans, I.S., Wilson,
J.P., and Gould, M., Proceedings of Geomorphometry 2011, Redlands,
109-112 (<a href="https://geomorphometry.org/system/files/StepinskiJasiewicz2011geomorphometry.pdf">PDF</a>)</li>
109-112 (<a href="https://www.geomorphometry.org/uploads/pdf/pdf2011/StepinskiJasiewicz2011geomorphometry.pdf">PDF</a>)</li>
<li>Jasiewicz, J., Stepinski, T., 2013, Geomorphons - a pattern
recognition approach to classification and mapping of landforms,
Geomorphology, vol. 182, 147-156 (DOI: <a href="https://doi.org/10.1016/j.geomorph.2012.11.005">10.1016/j.geomorph.2012.11.005</a>)</li>
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Expand Up @@ -10,7 +10,7 @@ <h2>DESCRIPTION</h2>
<p>The north, south, east, and west field values are the coordinates of the
edges of the geographic region. The rows and cols values describe the dimensions
of the matrix of data to follow. If the input is a
<a href="https://gmt.soest.hawaii.edu/">GMT</a> binary array
<a href="https://www.generic-mapping-tools.org/">GMT</a> binary array
(-h flag), the six dimension fields (north, south, east, west, rows and cols)
are obtained from the GMT header. If the bytes field is entered incorrectly an
error will be generated suggesting a closer bytes value.
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Expand Up @@ -456,7 +456,7 @@ <h3>Serpent Mound dataset</h3>
<a href="https://grasswiki.osgeo.org/wiki/LIDAR#Import_LAS_as_raster_DEM">importing LAS as raster DEM</a>.
<p>The sample LAS data are in the file "Serpent Mound Model LAS Data.laz",
available at
<a href="https://github.com/PDAL/data/raw/refs/heads/master/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>:
<a href="https://github.com/PDAL/data/raw/4ee9ee43b195268a59113555908c1c0cdf955bd4/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>:

<div class="code"><pre>
# print LAS file info
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<li>
V. Petras, A. Petrasova, J. Jeziorska, H. Mitasova (2016):
<em>Processing UAV and lidar point clouds in GRASS GIS</em>.
XXIII ISPRS Congress 2016 [<a href="https://isprs-archives.copernicus.org/articles/XLI-B7/945/2016/">ISPRS Archives</a>, <a href="https://www.researchgate.net/publication/304340172_Processing_UAV_and_lidar_point_clouds_in_GRASS_GIS">ResearchGate</a>]</li>
XXIII ISPRS Congress 2016 [<a href="https://doi.org/10.5194/isprs-archives-XLI-B7-945-2016">ISPRS Archives</a>, <a href="https://www.researchgate.net/publication/304340172_Processing_UAV_and_lidar_point_clouds_in_GRASS_GIS">ResearchGate</a>]</li>
<li>
<a href="https://www.asprs.org/committee-general/laser-las-file-format-exchange-activities.html">
ASPRS LAS format</a></li>
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4 changes: 2 additions & 2 deletions raster/r.in.pdal/r.in.pdal.html
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Expand Up @@ -514,7 +514,7 @@ <h3>Serpent Mound dataset</h3>
<a href="http://grasswiki.osgeo.org/wiki/LIDAR#Import_LAS_as_raster_DEM">importing LAS as raster DEM</a>.
<p>The sample LAS data are in the file "Serpent Mound Model LAS Data.laz",
available at
<a href="https://github.com/PDAL/data/raw/refs/heads/master/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>:
<a href="https://github.com/PDAL/data/raw/4ee9ee43b195268a59113555908c1c0cdf955bd4/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>:

<div class="code"><pre>
# print LAS file info
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<li>
V. Petras, A. Petrasova, J. Jeziorska, H. Mitasova (2016):
<em>Processing UAV and lidar point clouds in GRASS GIS</em>.
XXIII ISPRS Congress 2016 [<a href="https://isprs-archives.copernicus.org/articles/XLI-B7/945/2016/">ISPRS Archives</a>, <a href="https://www.researchgate.net/publication/304340172_Processing_UAV_and_lidar_point_clouds_in_GRASS_GIS">ResearchGate</a>]</li>
XXIII ISPRS Congress 2016 [<a href="https://doi.org/10.5194/isprs-archives-XLI-B7-945-2016">ISPRS Archives</a>, <a href="https://www.researchgate.net/publication/304340172_Processing_UAV_and_lidar_point_clouds_in_GRASS_GIS">ResearchGate</a>]</li>
<li>
<a href="http://www.asprs.org/Committee-General/LASer-LAS-File-Format-Exchange-Activities.html">
ASPRS LAS format</a></li>
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Expand Up @@ -68,7 +68,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -82,7 +82,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -68,7 +68,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -89,7 +89,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -190,7 +190,7 @@ <h2>REFERENCES</h2>
McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351
(<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>).</li>
(<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>).</li>

<li>
Baker, W.L. and Y. Cai. 1992. The r.le programs for multiscale analysis of
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Expand Up @@ -76,7 +76,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -78,7 +78,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -68,7 +68,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -70,7 +70,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -81,7 +81,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -67,7 +67,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -70,7 +70,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -67,7 +67,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -68,7 +68,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -69,7 +69,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -68,7 +68,7 @@ <h2>REFERENCES</h2>

McGarigal, K., and B. J. Marks. 1995. FRAGSTATS: spatial pattern
analysis program for quantifying landscape structure. USDA For. Serv.
Gen. Tech. Rep. PNW-351. (<a href="https://research.fs.usda.gov/treesearch/3064">PDF</a>)
Gen. Tech. Rep. PNW-351. (<a href="https://doi.org/10.2737/PNW-GTR-351">PDF</a>)

<h2>AUTHORS</h2>

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Expand Up @@ -9,7 +9,7 @@ <h2>DESCRIPTION</h2>
<h2>NOTES</h2>

With the -h flag, data can be directly used by
<a href="https://gmt.soest.hawaii.edu/">GMT</a> as Grid Format 1 (float) or
<a href="https://www.generic-mapping-tools.org/">GMT</a> as Grid Format 1 (float) or
2 (short). For example:

<div class="code"><pre>
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Expand Up @@ -74,7 +74,7 @@ <h2>NOTES</h2>
<p>Lawrence A. Rowe, Kevin Gong, Ketan Patel, and Dan Wallach Computer Science
Division-EECS, Univ. of Calif. at Berkeley
<p>Available from Berkeley:
<a href="http://biowiki.org/BerkeleyMpegEncoder">http://biowiki.org/BerkeleyMpegEncoder</a>
<a href="https://web.archive.org/web/20091223063452/http://biowiki.org/BerkeleyMpegEncoder">http://biowiki.org/BerkeleyMpegEncoder</a> (Wayback machine)
<br>or as part of the netpbm package (<em>ppmtompeg</em>):
<a href="https://netpbm.sourceforge.net">https://netpbm.sourceforge.net</a>
<!--
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Expand Up @@ -301,7 +301,7 @@ <h2>REFERENCES</h2>
<li> <a href="https://proj.org/operations/index.html">Coordinate operations</a> by PROJ (projections, conversions, transformations, pipeline operator)</li>
<li> <a href="https://mapref.org">MapRef -
The Collection of Map Projections and Reference Systems for Europe</a></li>
<li> <a href="http://www.crs-geo.eu">Information and Service System for European Coordinate Reference Systems - CRS</a></li>
<li> <a href="https://www.crs-geo.eu">Information and Service System for European Coordinate Reference Systems - CRS</a></li>
</ul>

<h2>SEE ALSO</h2>
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Expand Up @@ -279,6 +279,7 @@ <h2>REFERENCES</h2>
<li> Hofierka, J., Mitasova, H., Neteler, M., 2009. <i>Geomorphometry in GRASS GIS.</i>
In: Hengl, T. and Reuter, H.I. (Eds), <i>Geomorphometry: Concepts, Software, Applications. </i>
Developments in Soil Science, vol. 33, Elsevier, 387-410 pp,
<a href="https://doi.org/10.1016/S0166-2481(08)00017-2">doi:10.1016/S0166-2481(08)00017-2</a>,
<a href="https://www.geomorphometry.org">https://www.geomorphometry.org</a></li>
</ul>

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Expand Up @@ -176,7 +176,7 @@ <h3>Working with 3D visualization software</h3>
VTK files can be visualized with the
<em><a href="https://vtk.org">VTK Toolkit</a></em>,
<em><a href="https://www.paraview.org">Paraview</a></em> and
<em><a href="https://mayavi.sourceforge.net">MayaVi</a></em>.
<em><a href="https://github.com/enthought/mayavi">MayaVi</a></em>.
Moreover, GRASS GIS 2D raster maps can be exported to VTK with
<a href="r.out.vtk.html">r.out.vtk</a>
and GRASS GIS vector maps can be exported to VTK with
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Expand Up @@ -87,7 +87,7 @@ <h2>REFERENCES</h2>
DERIVATION OF A TASSELED CAP TRANSFORMATION BASED ON LANDSAT 7 AT-SATELLITE REFLECTANCE.
Chengquan Huang, Bruce Wylie, Limin Yang, Collin Homer and Gregory Zylstra Raytheon ITSS,
USGS EROS Data Center Sioux Falls, SD 57198, USA
(<a href="https://digitalcommons.unl.edu/cgi/viewcontent.cgi?article=1630&context=usgsstaffpub">PDF</a>).
(<a href="https://digitalcommons.unl.edu/usgsstaffpub/621/">PDF</a>).
This is published as well in INT. J. OF RS, 2002, VOL 23, NO. 8, 1741-1748.</li>
<li> MODIS Tasseled Cap coefficients - Ref: Lobser &amp; Cohen (2007). MODIS tasseled cap:
land cover characteristics expressed through transformed MODIS data.
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<h2>REFERENCES</h2>

The use of this module requires the following software to be installed:
<a href="https://www.dabeaz.com/ply//">PLY(Python-Lex-Yacc)</a>
<a href="https://www.dabeaz.com/ply/">PLY(Python-Lex-Yacc)</a>

<p>
<div class="code"><pre>
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<h2>REFERENCES</h2>

<a href="https://www.dabeaz.com/ply//">PLY(Python-Lex-Yacc)</a>
<a href="https://www.dabeaz.com/ply/">PLY(Python-Lex-Yacc)</a>

<h2>SEE ALSO</h2>

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<h2>DESCRIPTION</h2>

The <em>t.rename</em> module module renames space time datasets of different
The <em>t.rename</em> module renames space time datasets of different
types (STRDS, STVDS, STR3DS) and updates the space time dataset register
entries of the registered maps.

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Expand Up @@ -359,7 +359,7 @@ <h2>EXAMPLES</h2>

<h2>REFERENCES</h2>

<a href="https://www.dabeaz.com/ply//">PLY(Python-Lex-Yacc)</a>
<a href="https://www.dabeaz.com/ply/">PLY(Python-Lex-Yacc)</a>
<p>
Gebbert, S., Leppelt, T., Pebesma, E., 2019. A topology based spatio-temporal map algebra for
big data analysis. Data 4, 86. <a href="https://doi.org/10.3390/data4020086">https://doi.org/10.3390/data4020086</a>
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<h2>REFERENCES</h2>

<a href="https://www.dabeaz.com/ply//">PLY(Python-Lex-Yacc)</a>
<a href="https://www.dabeaz.com/ply/">PLY(Python-Lex-Yacc)</a>

<h2>SEE ALSO</h2>

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Expand Up @@ -67,7 +67,7 @@ <h3>PostgreSQL/PostGIS Creation Options</h3>
default: <code>topo</code></li>
<li><code>TOPO_TOLERANCE=&lt;value&gt;</code> - tolerance for PostGIS
Topology schema,
see <a href="https://postgis.net/docs/manual-2.0/CreateTopology.html">CreateTopology</a>
see <a href="https://postgis.net/docs/CreateTopology.html">CreateTopology</a>
function for defails, default: <code>0</code></li>
<li><code>TOPO_GEO_ONLY=YES|NO</code> - store in PostGIS Topology schema
only data relevant to Topo-Geo data model, default: <code>NO</code></li>
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Expand Up @@ -105,22 +105,20 @@ <h2>NOTES</h2>

<h2>EXAMPLE</h2>

This example is analogous to the example used in the GRASS wiki page for
<a href="https://grasswiki.osgeo.org/wiki/LIDAR#Import_LAS_as_vector_points">importing LAS as vector points</a>.
<p>The sample LAS data are in the file "Serpent Mound Model LAS Data.laz",
The sample LAS data are in the file "Serpent Mound Model LAS Data.laz",
available at
<a href="https://github.com/PDAL/data/raw/refs/heads/master/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>
<a href="https://github.com/PDAL/data/raw/4ee9ee43b195268a59113555908c1c0cdf955bd4/liblas/Serpent%20Mound%20Model%20LAS%20Data.laz">Serpent Mound Model LAS Data.laz</a>

<div class="code"><pre>
# print LAS file info
v.in.lidar -p input="Serpent Mound Model LAS Data.laz"
# print LAS file info
v.in.lidar -p input="Serpent Mound Model LAS Data.laz"

# create a project with CRS information of the LAS data
v.in.lidar -i input="Serpent Mound Model LAS Data.laz" project=Serpent_Mound
# create a project with CRS information of the LAS data
v.in.lidar -i input="Serpent Mound Model LAS Data.laz" project=Serpent_Mound

# quit and restart GRASS in the newly created project "Serpent_Mound"
# real import of LiDAR LAS data, without topology and without attribute table
v.in.lidar -tb input="Serpent Mound Model LAS Data.laz" output=Serpent_Mound_Model_pts
# quit and restart GRASS in the newly created project "Serpent_Mound"
# real import of LiDAR LAS data, without topology and without attribute table
v.in.lidar -tb input="Serpent Mound Model LAS Data.laz" output=Serpent_Mound_Model_pts
</pre></div>

<h2>REFERENCES</h2>
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Expand Up @@ -27,7 +27,7 @@ <h2>REFERENCES</h2>
V. Petras, A. Petrasova, J. Jeziorska, H. Mitasova (2016):
<em>Processing UAV and lidar point clouds in GRASS GIS</em>.
XXIII ISPRS Congress 2016
[<a href="https://isprs-archives.copernicus.org/articles/XLI-B7/945/2016/">ISPRS Archives</a>,
[<a href="https://doi.org/10.5194/isprs-archives-XLI-B7-945-2016">ISPRS Archives</a>,
<a href="https://www.researchgate.net/publication/304340172_Processing_UAV_and_lidar_point_clouds_in_GRASS_GIS">ResearchGate</a>]</li>
</ul>

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Expand Up @@ -167,7 +167,7 @@ <h2>NOTES</h2>

<h2>SEE ALSO</h2>

<em>R. Blazek, 2004, <a href="https://web.archive.org/web/20070301130303/http://gisws.media.osaka-cu.ac.jp/grass04/viewpaper.php?id=50">Introducing the Linear Reference System in GRASS</a>, Bangkok, GRASS User Conf. Proc.</em><br>
<em>R. Blazek, 2004, <a href="https://www.geoinfo-lab.org/grass04/Full%20Paper_PDF/Introducing%20the%20Linear%20Reference%20System%20in%20GRASS.pdf">Introducing the Linear Reference System in GRASS</a>, Bangkok, GRASS User Conf. Proc.</em><br>
<em>R. Blazek, 2005, <a href="https://web.archive.org/web/20240814152234/http://creativecity.gscc.osaka-cu.ac.jp/IJG/article/download/320/321">Introducing the Linear Reference System in GRASS</a>, International Journal of Geoinformatics, Vol. 1(3), pp. 95-100</em><br>
<p>
<em>
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Expand Up @@ -150,7 +150,7 @@ <h2>SEE ALSO</h2>
<p>
<em>
<a href="lrs.html">LRS tutorial</a>,<br>
<a href="https://web.archive.org/web/20070301130303/http://gisws.media.osaka-cu.ac.jp/grass04/viewpaper.php?id=50">Introducing the Linear Reference System in GRASS</a>
<a href="https://www.geoinfo-lab.org/grass04/Full%20Paper_PDF/Introducing%20the%20Linear%20Reference%20System%20in%20GRASS.pdf">Introducing the Linear Reference System in GRASS</a>
</em>

<h2>AUTHORS</h2>
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