[GRASS-SVN] r73722 - in grass-promo/grassposter: . 2018_AGU_Geospatial_Research_Tool 2018_AGU_Geospatial_Research_Tool/images 2018_AGU_Geospatial_Research_Tool/logos

svn_grass at osgeo.org svn_grass at osgeo.org
Thu Nov 29 07:02:24 PST 2018


Author: wenzeslaus
Date: 2018-11-29 07:02:24 -0800 (Thu, 29 Nov 2018)
New Revision: 73722

Added:
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/Makefile
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/README.txt
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/mundialis.pdf
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/ncstate.pdf
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.bib
   grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.tex
Log:
poster: GRASS GIS: A General-purpose Geospatial Research Tool

Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/Makefile
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/Makefile	                        (rev 0)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/Makefile	2018-11-29 15:02:24 UTC (rev 73722)
@@ -0,0 +1,28 @@
+FILE=poster
+
+all: $(FILE).pdf
+
+$(FILE).pdf: *.tex Makefile poster.bib
+	make pdf
+	make pdf
+	@while grep ''Rerun to get' to get' $(FILE).log >/dev/null 2>&1 ; do \
+		make pdf; \
+	done
+
+pdf:
+	# using - to ignore error from the first latex
+	# the error is caused by something related to hyperref and
+	# second compilation gets through (this is an workaround)
+	-pdflatex -interaction=nonstopmode $(FILE).tex
+	pdflatex -interaction=nonstopmode $(FILE).tex
+
+clean:
+	rm -f *~ *.aux *.log *.out *.toc *.bbl *.blg *-blx.bib *.ps *.pyg
+
+distclean:
+	make clean
+	rm -f $(FILE).pdf
+
+rasterized:
+	gs -sDEVICE=png16m -r400 -o poster.png poster.pdf
+	convert poster.png -rotate 90 poster_rasterized.pdf

Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/README.txt
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/README.txt	                        (rev 0)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/README.txt	2018-11-29 15:02:24 UTC (rev 73722)
@@ -0,0 +1,38 @@
+# Poster instructions
+
+## Dependencies
+
+This poster requires pdflatex been installed.
+In addition, some styles are needed.
+
+Fedora:
+
+    dnf install texlive texlive-a0poster texlive-wrapfig \
+        texlive-standalone texlive-tikzposter texlive-xstring
+
+Debian/Ubuntu:
+
+    sudo apt-get install texlive-latex-extra texlive-pictures pgf
+
+## Rasterization
+
+To create a rasterized version (some plotters have trouble with the PDF)
+use
+
+    make rasterize
+
+You can use this file to create a small PNG of the poster. It is best
+rescaled in Gimp using Sinc (Lanczos3) method.
+
+To create a minimum size image which will be still readable (although
+not necessarily nice) use:
+
+    # renders fonts with low quality
+    gs -sDEVICE=png16m -dDownScaleFactor=2 -r50 \
+        -o poster.png poster.pdf
+    # optimizes compression
+    optipng -o9 poster.png
+    # simplify colors (destroys some colors, esp. gradients)
+    pngnq -n 128 -s 3 poster.png
+    # overwrite the original file
+    mv poster-nq8.png poster.png

Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg
===================================================================
(Binary files differ)

Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/damflood_tangible.jpg
___________________________________________________________________
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/elevation_lidar.png
___________________________________________________________________
Added: svn:mime-type
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/lidar_profile.png
___________________________________________________________________
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/network_trips.png
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg
===================================================================
(Binary files differ)

Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/rsimwater_architects.jpg
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
+application/octet-stream
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_colored.png
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
+application/octet-stream
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png
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(Binary files differ)

Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/superpixels_slic_pseudo.png
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/images/temporal_precip_temp.png
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
+application/octet-stream
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/cga.pdf
___________________________________________________________________
Added: svn:mime-type
## -0,0 +1 ##
+application/octet-stream
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf
===================================================================
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Index: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf	2018-11-28 16:48:27 UTC (rev 73721)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/grass.pdf
___________________________________________________________________
Added: svn:mime-type
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/mundialis.pdf
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/mundialis.pdf	                        (rev 0)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/mundialis.pdf	2018-11-29 15:02:24 UTC (rev 73722)
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+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/ncstate.pdf	2018-11-29 15:02:24 UTC (rev 73722)

Property changes on: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/logos/ncstate.pdf
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Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.bib
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.bib	                        (rev 0)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.bib	2018-11-29 15:02:24 UTC (rev 73722)
@@ -0,0 +1,448 @@
+ at comment{x-kbibtex-personnameformatting=<%l><, %f>}
+
+ at article{baker1992r,
+	author = "Baker, W. L. and Cai, Y.",
+	journal = "Landscape Ecology",
+	number = "4",
+	pages = "291--302",
+	publisher = "Springer",
+	title = "{The r. le programs for multiscale analysis of landscape structure using the {GRASS} geographical information system}",
+	volume = "7",
+	year = "1992"
+}
+
+ at article{rocchini2013calculating,
+	author = "Rocchini, D. and Delucchi, L. and Bacaro, G. and Cavallini, P. and Feilhauer, H. and Foody, G. M. and He, K. S. and Nagendra, H. and Porta, C. and Ricotta, C. and others",
+	journal = "Ecological informatics",
+	pages = "82--93",
+	publisher = "Elsevier",
+	title = "{Calculating landscape diversity with information-theory based indices: A {GRASS GIS} solution}",
+	volume = "17",
+	year = "2013"
+}
+
+ at article{cannata2012two,
+	author = "Cannata, M. and Marzocchi, R.",
+	journal = "Natural hazards",
+	number = "3",
+	pages = "1143--1159",
+	publisher = "Springer",
+	title = "{Two-dimensional dam break flooding simulation: a {GIS}-embedded approach}",
+	volume = "61",
+	year = "2012"
+}
+
+ at book{chemin2012distributed,
+	author = "Chemin, Y.",
+	publisher = "INTECH Open Access Publisher",
+	title = "{A Distributed Benchmarking Framework for Actual {ET} Models}",
+	year = "2012"
+}
+
+ at book{chemin2014remote,
+	author = "Chemin, Y.",
+	publisher = "Lulu",
+	title = "{Remote Sensing Raster Programming}",
+	year = "2014"
+}
+
+ at article{rodriguez2013data,
+	author = "Rodriguez-Aseretto, D. and de Rigo, D. and {Di Leo}, M. and Cort{\'e}s, A. and San-Miguel-Ayanz, J.",
+	citeulike-article-id = "13387794",
+	citeulike-linkout-0 = "http://dx.doi.org/10.1016/j.procs.2013.05.355",
+	doi = "10.1016/j.procs.2013.05.355",
+	issn = "18770509",
+	journal = "Procedia Computer Science",
+	month = jan,
+	pages = "1861--1870",
+	posted-at = "2014-10-10 13:47:37",
+	priority = "0",
+	title = "{A Data-driven Model for Large Wildfire Behaviour Prediction in {Europe}}",
+	url = "http://dx.doi.org/10.1016/j.procs.2013.05.355",
+	volume = "18",
+	year = "2013"
+}
+
+ at incollection{derigo2013architecture,
+	author = "de Rigo, D. and Rodriguez-Aseretto, D. and Bosco, C. and {Di Leo}, M. and San-Miguel-Ayanz, J.",
+	booktitle = "{Environmental Software Systems. Fostering Information Sharing}",
+	citeulike-article-id = "13387795",
+	citeulike-linkout-0 = "http://dx.doi.org/10.1007/978-3-642-41151-9\_35",
+	citeulike-linkout-1 = "http://link.springer.com/chapter/10.1007/978-3-642-41151-9\_35",
+	doi = "10.1007/978-3-642-41151-9_35",
+	editor = "H\v{r}eb{\'i}\v{c}ek, Ji\v{r}{\'i} and Schimak, Gerald and Kub{\'a}sek, Miroslav and Rizzoli, Andrea",
+	pages = "367--380",
+	posted-at = "2014-10-10 13:51:37",
+	priority = "0",
+	publisher = "Springer Berlin Heidelberg",
+	series = "{IFIP Advances in Information and Communication Technology}",
+	title = "{An Architecture for Adaptive Robust Modelling of Wildfire Behaviour under Deep Uncertainty}",
+	url = "http://dx.doi.org/10.1007/978-3-642-41151-9\_35",
+	volume = "413",
+	year = "2013"
+}
+
+ at incollection{ashtekar2014digital,
+	author = "Ashtekar, J. M. and Owens, P. R. and Brown, R. A. and Winzeler, H. E. and Dorantes, M. and Libohova, Z. and Dasilva, M. and Castro, A.",
+	booktitle = "{GlobalSoilMap: Basis of the global spatial soil information system}",
+	pages = "367",
+	publisher = "CRC Press",
+	title = "{Digital mapping of soil properties and associated uncertainties in the Llanos Orientales, South America}",
+	year = "2014"
+}
+
+ at article{jasiewicz2013geomorphons,
+	author = "Jasiewicz, J. and Stepinski, T. F.",
+	journal = "Geomorphology",
+	pages = "147--156",
+	publisher = "Elsevier",
+	title = "{Geomorphons -- a pattern recognition approach to classification and mapping of landforms}",
+	volume = "182",
+	year = "2013"
+}
+
+ at article{garcia2007comparison,
+	author = "Garc{\'i}a, M. and Villagarc{\'i}a, L. and Contreras, S. and Domingo, F. and Puigdef{\'a}bregas, J.",
+	journal = "Sensors",
+	number = "6",
+	pages = "860--883",
+	publisher = "Molecular Diversity Preservation International",
+	title = "{Comparison of three operative models for estimating the surface water deficit using {ASTER} reflective and thermal data}",
+	volume = "7",
+	year = "2007"
+}
+
+ at article{gao2008intercomparison,
+	author = "Gao, Y. and Long, D.",
+	journal = "Hydrological processes",
+	number = "25",
+	pages = "4850--4869",
+	publisher = "Wiley Online Library",
+	title = "{Intercomparison of remote sensing-based models for estimation of evapotranspiration and accuracy assessment based on {SWAT}}",
+	volume = "22",
+	year = "2008"
+}
+
+ at article{Gebbert20141,
+	abstract = "Abstract Time in geographic information systems has been a research theme for more than two decades, resulting in comprehensive theoretical work, many research prototypes and several working solutions. However, none of the available solutions provides the ability to manage, analyze, process and visualize large environmental spatio-temporal datasets and the investigation and assessment of temporal relationships between them. We present in this paper a freely available field based temporal GIS (TGRASS) that fulfills these requirements. Our approach is based on the integration of time in the open source Geographic Resources Analysis Support System (GRASS). We introduce the concept of a space time dataset that is defined as a collection of time stamped raster, voxel or vector data. A dedicated set of spatio-temporal tools was implemented to manage, process and analyze space time datasets and their temporal and spatial relationships. We demonstrate the temporal GIS and envir
 onmental modeling capabilities of TGRASS by analyzing a multi-decadal European climate dataset.",
+	author = "Gebbert, S. and Pebesma, E.",
+	doi = "10.1016/j.envsoft.2013.11.001",
+	issn = "1364-8152",
+	journal = "Environmental Modelling \& Software",
+	keywords = "Temporal {GIS}; Spatio-temporal modeling; {GRASS GIS}; {TGRASS}",
+	note = "",
+	pages = "1--12",
+	title = "{A temporal {GIS} for field based environmental modeling}",
+	url = "http://www.sciencedirect.com/science/article/pii/S136481521300282X",
+	volume = "53",
+	year = "2014"
+}
+
+ at article{Haylock2008_climate_series,
+	abstract = "{We present a European land-only daily high-resolution gridded data set for precipitation and minimum, maximum, and mean surface temperature for the period 1950--2006. This data set improves on previous products in its spatial resolution and extent, time period, number of contributing stations, and attention to finding the most appropriate method for spatial interpolation of daily climate observations. The gridded data are delivered on four spatial resolutions to match the grids used in previous products as well as many of the rotated pole Regional Climate Models (RCMs) currently in use. Each data set has been designed to provide the best estimate of grid box averages rather than point values to enable direct comparison with RCMs. We employ a three-step process of interpolation, by first interpolating the monthly precipitation totals and monthly mean temperature using three-dimensional thin-plate splines, then interpolating the daily anomalies using indicator and univer
 sal kriging for precipitation and kriging with an external drift for temperature, then combining the monthly and daily estimates. Interpolation uncertainty is quantified by the provision of daily standard errors for every grid square. The daily uncertainty averaged across the entire region is shown to be largely dependent on the season and number of contributing observations. We examine the effect that interpolation has on the magnitude of the extremes in the observations by calculating areal reduction factors for daily maximum temperature and precipitation events with return periods up to 10 years. }",
+	author = "Haylock, M. R. and Hofstra, N. and Tank, A. M. G. K. and Klok, E. J. and Jones, P. D. and New, M.",
+	day = "30",
+	doi = "10.1029/2008JD010201",
+	issn = "0148-0227",
+	journal = "Journal of Geophysical Research",
+	keywords = "climate; data; kriging; meteorology; precipitation; splines; temperature",
+	month = oct,
+	number = "D20",
+	posted-at = "2009-08-12 00:09:46",
+	priority = "2",
+	title = "{A European daily high-resolution gridded data set of surface temperature and precipitation for {1950 - 2006}}",
+	volume = "113",
+	year = "2008"
+}
+
+ at techreport{mcgarigal1995fragstats,
+	author = "McGarigal, K. and Marks, B. J.",
+	group = "Forest Services",
+	institution = "USDA",
+	number = "PNW-351",
+	title = "{FRAGSTATS: spatial pattern analysis program for quantifying landscape structure}",
+	year = "1995"
+}
+
+ at inproceedings{raghavan2014deploying,
+	author = "Raghavan, V. and Choosumrong, S. and Yoshida, D. and Vinayaraj, P.",
+	booktitle = "{In Proceedings of FOSS4G Europe, Jacobs University, Bremen, Germany}",
+	month = "July",
+	title = "{Deploying Dynamic Routing Service for Emergency Scenarios using {pgRouting, GRASS and ZOO}}",
+	year = "2014"
+}
+
+ at article{rocchini2012let,
+	author = "Rocchini, D. and Neteler, M.",
+	journal = "Trends in Ecology \& Evolution",
+	number = "6",
+	pages = "310--311",
+	publisher = "Elsevier Current Trends",
+	title = "{Let the four freedoms paradigm apply to ecology}",
+	volume = "27",
+	year = "2012"
+}
+
+ at techreport{Rothermel1983how,
+	author = "Rothermel, R. C.",
+	institution = "US Forest Services",
+	number = "INT-143",
+	title = "{How to predict the spread and intensity of forest and range fires}",
+	year = "1983"
+}
+
+ at article{suleiman2008intercomparison,
+	author = "Suleiman, A. and Al-Bakri, J. and Duqqah, M. and Crago, R.",
+	journal = "Journal of Hydrometeorology",
+	number = "5",
+	pages = "903--919",
+	title = "{Intercomparison of evapotranspiration estimates at the different ecological zones in {Jordan}}",
+	volume = "9",
+	year = "2008"
+}
+
+ at article{timmermans2007intercomparison,
+	author = "Timmermans, W. J. and Kustas, W. P. and Anderson, M. C. and French, A. N.",
+	journal = "Remote Sensing of Environment",
+	number = "4",
+	pages = "369--384",
+	publisher = "Elsevier",
+	title = "{An intercomparison of the surface energy balance algorithm for land {(SEBAL)} and the two-source energy balance {(TSEB)} modeling schemes}",
+	volume = "108",
+	year = "2007"
+}
+
+ at phdthesis{xu1994simulating,
+	author = "Xu, J.",
+	school = "Rutgers University, New Brunswick, New Jersey",
+	title = "{Simulating the spread of wildfires using a geographic information system and remote sensing}",
+	year = "1994"
+}
+
+ at article{2013_DiLeo_etAl,
+	author = "{Di Leo}, M. and de Rigo, D. and Rodriguez-Aseretto, D. and Bosco, C. and Petroliagkis, T. and Camia, A. and San-Miguel-Ayanz, J.",
+	booktitle = "{Environmental Software Systems. Fostering Information Sharing}",
+	citeulike-article-id = "12612201",
+	citeulike-linkout-0 = "http://scholar.google.it/scholar?cluster=1214896257622472922",
+	citeulike-linkout-1 = "http://mastrave.org/bib/Di\_Leo\_etal\_ISESS2013.pdf",
+	citeulike-linkout-2 = "http://dx.doi.org/10.1007/978-3-642-41151-9\_2",
+	citeulike-linkout-3 = "http://dx.doi.org/10.1007/978-3-642-41151-9\_2",
+	citeulike-linkout-4 = "http://link.springer.com/chapter/10.1007/978-3-642-41151-9\_2",
+	doi = "10.1007/978-3-642-41151-9_2",
+	editor = "H\v{r}eb{\'i}\v{c}ek, Ji\v{r}{\'i} and Schimak, Gerald and Kub{\'a}sek, Miroslav and Rizzoli, Andrea E.",
+	issn = "1868-4238",
+	journal = {IFIP Advances in Information and Communication Technology ISSN:1868-4238. Special issue: "Environmental Software Systems. Fostering sharing information"},
+	pages = "11--22",
+	posted-at = "2014-10-10 13:24:52",
+	priority = "0",
+	publisher = "Springer Berlin Heidelberg",
+	series = "{IFIP Advances in Information and Communication Technology}",
+	title = "{Dynamic Data Driven Ensemble for Wildfire Behaviour Assessment: A Case Study}",
+	url = "http://scholar.google.it/scholar?cluster=1214896257622472922",
+	volume = "413",
+	year = "2013"
+}
+
+ at inproceedings{Petrasova2014,
+	address = "San Diego, California, USA",
+	author = "Petrasova, A. and Harmon, B. and Petras, V. and Mitasova, H.",
+	booktitle = "{7th International Congress on Environmental Modelling and Software}",
+	editor = "{Ames, D.P., Quinn, N.W.T., Rizzoli}, A.E. (Eds.)",
+	isbn = "978-88-9035-744-2",
+	month = "jun",
+	title = "{GIS-based environmental modeling with tangible interaction and dynamic visualization}",
+	url = "http://www.iemss.org/society/index.php/iemss-2014-proceedings",
+	year = "2014"
+}
+
+ at article{Mitas1988a,
+	author = "Mitas, L. and Mitasova, H.",
+	doi = "10.1016/0898-1221(88)90255-6",
+	issn = "0898-1221",
+	journal = "Computers \& Mathematics with Applications",
+	number = "12",
+	pages = "983--992",
+	title = "{General variational approach to the interpolation problem}",
+	volume = "16",
+	year = "1988"
+}
+
+ at article{Mitas1998b,
+	author = "Mitas, L. and Mitasova, H.",
+	doi = "10.1029/97WR03347",
+	issn = "1944-7973",
+	journal = "Water Resources Research",
+	number = "3",
+	pages = "505--516",
+	title = "{Distributed soil erosion simulation for effective erosion prevention}",
+	volume = "34",
+	year = "1998"
+}
+
+ at article{Mitas1993,
+	author = "Mitas, L. and Mitasova, H.",
+	doi = "10.1007/BF00893171",
+	issn = "0882-8121",
+	journal = "Mathematical Geology",
+	number = "6",
+	pages = "641--655",
+	title = "{Interpolation by regularized spline with tension: I. Theory and implementation}",
+	volume = "25",
+	year = "1993"
+}
+
+ at misc{Petras2014,
+	author = "Petras, V. and Gebbert, S.",
+	note = "Poster presented at 2014 Fall Meeting, AGU, San Francisco, Calif., 14-18 Dec",
+	title = "{Testing framework for GRASS GIS: ensuring reproducibility of scientific geospatial computing}",
+	year = "2014"
+}
+
+ at article{mea582,
+	author = "Petras, V. and Petrasova, A. and Harmon, B. and Meentemeyer, R. and Mitasova, H.",
+	note = "Manuscript submitted for publication",
+	title = "{Integrating open source solutions into geospatial science education}",
+	year = "2015"
+}
+
+ at article{neteler2012grass,
+	author = "Neteler, M. and Bowman, M.H. and Landa, M. and Metz, M.",
+	doi = "10.1016/j.envsoft.2011.11.014",
+	journal = "Environmental Modelling \& Software",
+	pages = "124--130",
+	publisher = "Elsevier",
+	title = "{GRASS GIS: a multi-purpose Open Source GIS}",
+	volume = "31",
+	year = "2012"
+}
+
+ at misc{ncsugis582,
+	author = "{NCSU}",
+	note = "\url{http://courses.ncsu.edu/gis582/common/grass/interpolation\_2.html}",
+	title = "{{GIS/MEA582}: Geospatial Modeling and Analysis}",
+	urldate = "2015-03-30",
+	year = 2015
+}
+
+ at misc{tracvsurfrst,
+	author = "{GRASS GIS Development Team}",
+	note = "\url{http://trac.osgeo.org/grass/log/grass/trunk/vector/v.surf.rst?rev=63988\&limit=999}",
+	title = "{GRASS GIS Trac: Revision log for v.surf.rst}",
+	urldate = "2015-03-31",
+	year = 2015
+}
+
+ at misc{tracrli,
+	author = "{GRASS GIS Development Team}",
+	note = "\url{http://trac.osgeo.org/grass/log/grass/trunk/raster/r.li?rev=63988\&limit=999}",
+	title = "{GRASS GIS Trac: Revision log for r.li}",
+	urldate = "2015-03-31",
+	year = 2015
+}
+
+ at article{achanta2012slic,
+	author = "Achanta, Radhakrishna and Shaji, Appu and Smith, Kevin and Lucchi, Aurelien and Fua, Pascal and S{\"u}sstrunk, Sabine",
+	journal = "IEEE transactions on pattern analysis and machine intelligence",
+	number = "11",
+	pages = "2274--2282",
+	publisher = "IEEE",
+	title = "{SLIC superpixels compared to state-of-the-art superpixel methods}",
+	volume = "34",
+	year = "2012"
+}
+
+ at misc{achanta2010epfl,
+	author = "Achanta, Radhakrishna",
+	publisher = "June",
+	title = "{{SLIC} Superpixels, {EPFL} Technical Report No. 149300}",
+	year = "2010"
+}
+
+ at phdthesis{vitti2008free,
+	author = "Vitti, A",
+	school = "PhD thesis in Environmental Engineering, Universit{\`a} di Trento, Italy",
+	title = "{Free discontinuity problems in image and signal segmentation}",
+	year = "2008"
+}
+
+ at article{mumford1989optimal,
+	author = "Mumford, David and Shah, Jayant",
+	journal = "Communications on pure and applied mathematics",
+	number = "5",
+	pages = "577--685",
+	publisher = "Wiley Online Library",
+	title = "{Optimal approximations by piecewise smooth functions and associated variational problems}",
+	volume = "42",
+	year = "1989"
+}
+
+ at article{march1997variational,
+	author = "March, Riccardo and Dozio, Marziano",
+	journal = "Image and Vision Computing",
+	number = "9",
+	pages = "705--712",
+	publisher = "Elsevier",
+	title = "{A variational method for the recovery of smooth boundaries}",
+	volume = "15",
+	year = "1997"
+}
+
+ at article{vitti2012mumford,
+	author = "Vitti, Alfonso",
+	journal = "ISPRS journal of photogrammetry and remote sensing",
+	pages = "50--64",
+	publisher = "Elsevier",
+	title = "{The Mumford--Shah variational model for image segmentation: An overview of the theory, implementation and use}",
+	volume = "69",
+	year = "2012"
+}
+
+ at misc{zhuang1992image,
+	author = "Zhuang, Hong C.",
+	issn = "0899-7853",
+	journal = "GRASSClIPPINGS",
+	number = "2",
+	pages = "10-11",
+	title = "{Image processing in GRASS}",
+	volume = "6",
+	year = "1992"
+}
+
+ at article{roerink2000reconstructing,
+	author = "Roerink, GJ and Menenti, M and Verhoef, W",
+	journal = "International Journal of Remote Sensing",
+	number = "9",
+	pages = "1911--1917",
+	publisher = "Taylor \& Francis",
+	title = "{Reconstructing cloudfree NDVI composites using Fourier analysis of time series}",
+	volume = "21",
+	year = "2000"
+}
+
+ at inproceedings{chemin2015grass,
+	author = "Chemin, Yann and Petras, Vaclav and Petrasova, Anna and Landa, Martin and Gebbert, S{\"o}ren and Zambelli, Pietro and Neteler, Markus and L{\"o}we, Peter and {Di Leo}, Margherita",
+	booktitle = "{Geophysical Research Abstracts}",
+	pages = "8314",
+	title = "{{GRASS GIS}: a peer-reviewed scientific platform and future research repository}",
+	volume = "17",
+	year = "2015"
+}
+
+ at inproceedings{leppelt2015grass,
+	author = "Leppelt, Thomas and Gebbert, S{\"o}ren",
+	booktitle = "{EGU General Assembly Conference Abstracts}",
+	pages = "11672",
+	title = "{A GRASS GIS based Spatio-Temporal Algebra for Raster-, 3D Raster-and Vector Time Series Data}",
+	volume = "17",
+	year = "2015"
+}
+
+ at inproceedings{gebbert2015grass,
+	author = "Gebbert, S{\"o}ren and Leppelt, Thomas",
+	booktitle = "{EGU General Assembly Conference Abstracts}",
+	pages = "7296",
+	title = "{GRASS GIS: The first Open Source Temporal GIS}",
+	volume = "17",
+	year = "2015"
+}
+

Added: grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.tex
===================================================================
--- grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.tex	                        (rev 0)
+++ grass-promo/grassposter/2018_AGU_Geospatial_Research_Tool/poster.tex	2018-11-29 15:02:24 UTC (rev 73722)
@@ -0,0 +1,506 @@
+% License: CC BY-SA
+% Authors: See the authors below and see also acknowledgement for authors of some images or research
+
+\documentclass[25pt, margin=0mm, innermargin=25mm, blockverticalspace=25mm, colspace=25mm, subcolspace=8mm]{tikzposter}
+\geometry{paperwidth=63in,paperheight=42in}
+
+% to stretch boxes over whole paper with custor paper size
+\makeatletter
+\setlength{\TP at visibletextwidth}{\textwidth-2\TP at innermargin}
+\setlength{\TP at visibletextheight}{\textheight-2\TP at innermargin}
+\makeatother
+
+% Fira Sans, GRASS GIS branding sans serif font
+\usepackage{FiraSans}
+\renewcommand*\oldstylenums[1]{{\firaoldstyle #1}}
+
+% EB Garamond, GRASS GIS branding serif font
+% note that EB Garamond does not have bold
+\usepackage[cmintegrals,cmbraces]{newtxmath}
+\usepackage{ebgaramond-maths}
+
+% might be needed for both font packages
+\usepackage[T1]{fontenc}
+
+% uncomment for all sans serif
+% \renewcommand{\familydefault}{\sfdefault}
+
+
+\usepackage[utf8]{inputenc}
+\usepackage{wrapfig}
+\usepackage[hidelinks]{hyperref}
+
+% For bibliography styling
+%% TODO: all names should be abbreviated
+\usepackage{natbib}
+
+\definecolor{textcolor}{HTML}{000000}
+
+\definecolor{titleTextColor}{HTML}{000000}
+\definecolorpalette{grassColorPalette} {
+  \definecolor{colorOne}{HTML}{419041}
+  % \definecolor{colorTwo}{HTML}{cccccc}
+  \definecolor{colorTwo}{HTML}{dddddd}
+  \definecolor{colorThree}{HTML}{F1B52D}
+  % \definecolor{colorThree}{HTML}{EFA126}
+}
+
+\usetheme{Default}
+\usetitlestyle{Empty}
+\usecolorstyle[colorPalette=grassColorPalette]{Britain}
+\colorlet{backgroundcolor}{white}
+
+\title{
+\Huge
+\textcolor{titleTextColor}{
+\textsf{
+% \textbf{
+\fontsize{130}{100}\selectfont
+\textbf{GRASS}\,{\firalight GIS}: A General-purpose Geospatial Research Tool
+% }
+}
+}
+}
+
+\newlength{\grasslogoheight}
+\setlength{\grasslogoheight}{0.09\textheight}
+\newlength{\instlogoheight}
+\setlength{\instlogoheight}{0.33\grasslogoheight}
+
+% \setlength{\blocktitleheight}{0.02\textheight}
+
+% style for institute numbers
+\newcommand{\inst}[1]{\hspace{2pt}$^{\mbox{\normalsize#1}}$\hspace{-7pt}}
+\newcommand{\instlist}[1]{\hspace{1pt}$^{\mbox{\normalsize#1}}$\hspace{2pt}}
+
+\author{
+Helena Mitasova\inst{1},
+Vaclav Petras\inst{1}\,*\hspace{-7pt},
+Anna Petrasova\inst{1},
+\&
+Markus Neteler\inst{2}
+\\
+% AGU allows to specify a scientific team, but it does not seem to fit
+% with our case 100%; simply using formatting which is in the AGU program
+% (but adding note)
+Scientific Team: GRASS GIS Development Team**
+}
+\institute{
+\large
+\instlist{1}Center for Geospatial Analytics, North Carolina State University, USA;
+\instlist{2}mundialis GmbH \& Co. KG, Germany;
+*Corresponding author: wenzeslaus at gmail.com, vpetras at ncsu.edu;
+% using Black Duck Open Hub to ``guestimate'' that
+**Over 10 other members of the core team and numerous other contributors
+\\[1.7cm]
+\includegraphics[height=3cm]{ncstate}%
+\hspace{1cm}%
+\includegraphics[height=3cm]{cga}%
+\hspace{3cm}%
+\includegraphics[height=3.4cm]{mundialis}%
+}
+
+\hypersetup
+{
+    pdfauthor={H. Mitasova, V. Petras, A. Petrasova, M. Neteler},
+    pdfsubject={AGU Fall Meeting 2018 Poster},
+    pdftitle={GRASS GIS: A General-purpose Geospatial Research Tool},
+    pdfkeywords={GIS, algorithms, methods, preservation, science, reproducibility}
+}
+
+% \usetemplate{1}
+% \setinstituteshift{1}
+
+% \setblocktitleheight{2}
+% \setblockspacing{1}
+
+\graphicspath{{images/}{logos/}}
+
+\newcommand{\blocktitlewrap}[1]{\textnormal{\textsf{\textsc{\huge#1}}}}
+% it is not possible (?) to change block title in the class, using wrapper
+% the command introduced using:
+%   sed -i 's/\\block{\([^}]*\)}/\\block{\\blocktitlewrap{\1}}/g' main.tex
+
+% bullet point style
+\renewcommand{\labelitemi}{\textcolor{gray}{$\bullet$}\hspace{0.5ex}}
+
+% GRASS module
+\newcommand{\gmodule}[1]{\href{http://grass.osgeo.org/grass72/manuals/#1.html}{\emph{#1}}}
+\newcommand{\gamodule}[1]{\href{http://grass.osgeo.org/grass72/manuals/addons/#1.html}{\emph{#1}}}
+\newcommand{\gmodulenolink}[1]{\emph{#1}}
+
+\begin{document}
+
+\node[above left,opacity=0.99,inner sep=0pt,outer sep=4cm] at (bottomleft -| topright)%
+  {\includegraphics[width=0.3\paperwidth]{grass}};
+
+\maketitle[width=0.92\textwidth]
+
+% \maketitle
+% \addlogo[north west]{(2,-1)}{9cm}{images/Grass_GIS}
+%Please insert your institution logo here
+% \addlogo[north east]{(-2,-2.5)}{4cm}{images/logo_FEM_CRI}
+% \addlogo[north east]{(-2,-5.5)}{4cm}{images/NC_State_Seal}
+% \addlogo[north east]{(-8,-2.5)}{4cm}{images/Logo_cvut}
+% \addlogo[north east]{(-8,-6.5)}{4cm}{images/IWMI_logo}
+% \addlogo[north east]{(-2,-10.5)}{4cm}{images/logo_ec-jrc}
+
+\begin{columns}
+
+% Abstract
+%
+% GRASS GIS (grass.osgeo.org) is an open source software for geospatial analysis,
+% remote sensing, general geoprocessing and visualization. It is a
+% community-driven project with over 35 years of continuous software development
+% based on scientific expertise from many geospatial fields. It is characterized
+% by long-term releases, stable APIs, and emphasis on science. GRASS GIS
+% distribution strives to provide single integrated environment for 2D and 3D
+% raster analysis, image processing, vector data analysis, and spatio-temporal
+% data processing. It supports large raster files (billions of cells), vector
+% topology, coupling with databases, and 64 bit memory. New code based on recent
+% research is typically contributed to GRASS GIS Addons repository. Mature, widely
+% used code is then moved to the main code base to maximize integration and
+% availability. Whether it is addons or the main code base, code is usually
+% maintained by the community and preserved in long term even in cases when the
+% original author no longer supports the code. To support the needs of scientists,
+% the documentation includes not only links to the source code, its history, and
+% its authors, but also links to research papers that describe the algorithms
+% implemented in the modules.
+%
+% Code is not only maintained but also extended and improved. For example,
+% watershed and stream extraction using least cost path approach was implemented
+% in 1989 and extended for massive datasets in 2011. Similarly, vector topology
+% cleaning was introduced in 2002, updated over time and substantially improved in
+% 2016. Another example is a solar energy module available since 1993 and
+% parallelized in 2017. The current stable version of GRASS GIS 7.4 provides new
+% features for geosciences such as temporal framework with temporal algebra for
+% large time-series processing, fusion of elevation models from various sensors,
+% 3D flows, landform detection, image segmentation, simplified batch processing,
+% and integrated Python editor among others. GRASS GIS runs in various
+% environments including Linux, Mac, Windows, Docker, Raspberry Pi, and on HPC
+% clusters. The modules are written in Python, C, or C++. Besides command line
+% interface, GRASS GIS provides a graphical user interface, a Python API, and a C
+% API. Interfaces with other languages such as R and Ruby are supplied by
+% collaborating communities.
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\column{0.25}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Overview}}{
+
+\Large
+
+
+\begin{itemize}
+% Basic Topics
+ \item Community-driven project
+ \item 35 years of continuous software development
+ \item long-term releases, stable APIs, and emphasis on science
+ \item single integrated environment for 2D and 3D raster analysis, image processing, vector data analysis, and spatio-temporal data processing
+\end{itemize}
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Functionality}}{
+
+\Large
+
+GRASS GIS
+distribution strives to provide single integrated environment for 2D and 3D
+raster analysis, image processing, vector data analysis, and spatio-temporal
+data processing. It supports large raster files (billions of cells), vector
+topology, coupling with databases, and 64 bit memory.
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Code Life Cycle}}{
+
+\Large
+
+New code based on recent
+research is typically contributed to GRASS GIS Addons repository. Mature, widely
+used code is then moved to the main code base to maximize integration and
+availability. Whether it is addons or the main code base, code is usually
+maintained by the community and preserved in long term even in cases when the
+original author no longer supports the code. To support the needs of scientists,
+the documentation includes not only links to the source code, its history, and
+its authors, but also links to research papers that describe the algorithms
+implemented in the modules.
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Example: Spatio-Temporal Data Analysis}}{
+The time dimension was introduced in GRASS GIS 7.0 for vector maps, rasters, and 3D rasters
+which transformed GRASS GIS into a fully-featured temporal GIS \citep{Gebbert20141, gebbert2015grass}.
+Time series of map layers are managed in space time datasets, a new data type in GRASS GIS,
+and are still accessible also as individual map layers.
+Based on the GRASS GIS Temporal Framework Python application programming interface (API),
+more than 50 modules were implemented to manage, analyze, process
+and visualize space time datasets.
+More than 100,000 map layers can be now handled efficiently in GRASS GIS.
+%
+Example usages of this functionality include
+analysis of the
+European Climate Assessment \& Dataset ECA\&D \citep{Haylock2008_climate_series}
+and temperate climate zone in the European Union identification \citep{Gebbert20141}.
+
+The new temporal modules (staring with \gmodulenolink{t.})
+work beside well established \gmodule{r.series} module
+and specialized modules such as \gamodule{r.hants} implemented according to \cite{roerink2000reconstructing}
+or \gamodule{r.seasons}.
+Latest addition includes raster and vector temporal algebra
+which can be used for tasks such as computing hydrothermal coefficient for a time series of climate data
+using the actual mathematical formula \citep{leppelt2015grass}.
+
+\vspace*{1.5cm}
+
+\begin{minipage}{\linewidth}
+\centering
+\includegraphics[width=.7\linewidth]{images/temporal_precip_temp}
+\\
+Creating a synchronized animation of monthly total precipitation and mean temperature for NC, USA
+\end{minipage}
+
+\vspace*{1cm}
+
+}
+
+
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\column{0.25}
+
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Example: Water, Floods and Erosion}}{
+
+GRASS GIS entails several modules that constitute the result of active research on natural hazards.
+The \gmodule{r.sim.water} simulation model \citep{Mitas1998b}
+for overland flow with spatially variable rainfall excess conditions was integrated into the Emergency
+Routing Decision Planning system as a WPS \citep{raghavan2014deploying}.
+The module \gmodule{r.sim.water} together with
+the module \gmodule{r.sim.sediment} for erosion-deposition modeling
+implements a path sampling algorithm which is robust and easy to parallelize.
+A unique least cost path algorithm which doesn't need any depression filling
+was implemented in \gmodule{r.watershed} module in 1989
+and it was updated for massive data sets in 2011.
+% TODO: refs
+The \gmodule{r.sim.water} module was also utilized by \cite{Petrasova2014} and is now part of
+\emph{Tangible Landscape}, a tangible GIS system, which also incorporated \gmodule{r.damflood},
+a dam break inundation simulation by \cite{cannata2012two}.
+
+\bigskip
+
+\vspace*{1cm}
+
+\centering
+
+\begin{minipage}{0.49\linewidth}
+\centering
+\includegraphics[width=0.7\textwidth]{rsimwater_architects}
+\end{minipage}
+~
+\begin{minipage}{0.49\linewidth}
+\includegraphics[width=\textwidth]{damflood_tangible}
+\end{minipage}
+
+\bigskip
+
+\begin{minipage}{0.49\linewidth}
+\centering
+Overland flow simulated by \gmodule{r.sim.water} used for landscape
+architecture design in Tangible Landscape environment
+(Historical master plan for Lake Raleigh, NC, USA)
+\end{minipage}
+~
+\begin{minipage}{0.49\linewidth}
+Dam breach on Lake Raleigh (NC, USA) in Tangible Landscape environment simulated using \gamodule{r.damflood} module
+\end{minipage}
+
+
+% \vspace*{1.4cm}
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Example: Vector Network Analysis}}{
+In 2003 Radim Blazek introduced shortest path analysis (\gmodule{v.net.path}),
+traveling salesman (\gmodule{v.net.salesman}),
+and several other modules for vector network analysis (staring with \gmodule{v.net}).
+Over the years, the number of available algorithms increased to over 15 modules
+including, for example, centrality measures and connected components added in 2009 by Daniel Bundala.
+In 2014 Stepan Turek implemented turns support into all relevant vector network modules.
+Also since GRASS GIS 7.0 all vector network analysis tools provide fine control over node costs.
+% combination with r.cost/r.walk workflows \citep{Petrasova2014}
+
+\bigskip
+
+\centering
+\begin{minipage}{0.9\linewidth}
+\begin{center}
+\includegraphics[width=\textwidth]{network_trips}
+A series of trips to collect samples across North Carolina, USA
+for water quality measurements
+as part of the Polyfluorinated Alkyl Substance Testing (PFAST) project.
+Trips are distinguished by color and were computed using multiple
+iterations of traveling salesman (\gmodule{v.net.salesman}).
+\end{center}
+\end{minipage}
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\column{0.25}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Example: Image Segmentations}}{
+\gamodule{r.smooth.seg} (formerly \gmodulenolink{r.seg})
+was created by Alfonso Vitti \citep{vitti2008free, vitti2012mumford}
+and implemented a piece-wise smooth approximation of the original image
+according to \cite{mumford1989optimal} and \cite{march1997variational}
+which can be used to reduce noise in the original image.
+
+This supplemented \gmodule{r.clump} available from 1980s
+which groups pixels with the same categories (or integer values).
+The latest version of \gmodule{r.clump} coming in GRASS GIS 7.4
+supports multiple image bands (or any rasters maps) as input.
+Clumping of cells based on threshold value and clumping
+of double precision floating point input is supported as well in the new version.
+
+Eric Momsen implemented initial version of region-growing image segmentation in 2012
+and Markus Metz then extended and optimized the code resulting in
+the inclusion of the \gmodule{i.segment} module into GRASS GIS 7.0
+and final replacement of old multi-resolution classification module of the same name
+which was available in 1992 \citep{zhuang1992image}.
+Another module called \gamodule{i.segment.hierarchical} by Pietro Zambelli is based on \gmodule{i.segment}
+and performs parallelized hierarchical segmentation.
+
+\vspace*{0.7cm}
+
+\begin{minipage}{0.5\linewidth}
+\begin{center}
+\includegraphics[width=\textwidth]{superpixels_slic_pseudo}
+\end{center}
+\end{minipage}
+~
+\begin{minipage}{0.5\linewidth}
+\begin{center}
+\includegraphics[width=\textwidth]{superpixels_slic_colored}
+\end{center}
+\end{minipage}
+\vspace{2mm}
+\begin{center}
+Superpixels (black outlines) on pseudo-color image of central Wake county, NC, USA (left)
+and the same superpixels colored according to the mean NDVI value per pixel (right).
+\end{center}
+
+\vspace*{1cm}
+
+In 2016 GRASS GIS implementation of SLIC Superpixels segmentation \citep{achanta2010epfl, achanta2012slic}
+was requested by the community
+and Rashad Kanavath and Markus Metz implemented \gmodule{i.superpixels.slic}
+which provides users both with SLIC and SLIC0 methods.
+
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{References}}{
+
+\vspace{-0.2cm}
+\scriptsize
+
+% \newcommand{\blocksectiontitle}[1]{\subsubsection*{\textcolor{gray}{\textsf{#1}}}}
+\newcommand{\blocksectiontitle}[1]{\textbf{#1}}
+
+%\blocksectiontitle{References}
+\begingroup
+\renewcommand{\section}[2]{}%
+\bibliographystyle{apalike}
+\bibliography{poster}
+\endgroup
+
+}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\column{0.25}
+
+%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
+\block{\blocktitlewrap{Example: Lidar Data Processing}}{
+
+Filtering of ground and non-ground points was included into GRASS GIS
+early on in the lidar era in the \gmodule{v.lidar.edgedetection} group of modules.
+% TODO: ref
+% v.lidar.correction Corrects the v.lidar.growing output. It is the last of the three algorithms for LIDAR .
+% v.lidar.edgedetection Detects the object's edges from a LIDAR data set.
+% v.lidar.growing Building contour determination and Region Growing algorithm for determining the building inside
+The module \gmodule{v.surf.rst} for spatial interpolation was developed approximately 20 years
+ago, but since then it has been improved several times \citep{tracvsurfrst}
+including recent parallelization which will be included in GRASS GIS 7.4.
+Currently the module is used for both digital terrain model interpolation and interpolations in general.
+
+The module \gmodule{r.in.lidar} statistically analyzes massive point clouds.
+% TODO: base_raster, ref
+For advanced general point analysis GRASS GIS
+\gmodule{v.outlier} implemented originally specifically for lidar data
+and recently also \gmodule{v.cluster}
+implementing variety of clustering methods including
+DBSCAN (Density-Based Spatial Clustering of Applications with Noise)
+and OPTICS (Ordering Points to Identify the Clustering Structure).
+The \gmodule{v.outlier} module serves as a base for a user contributed module \gamodule{v.lidar.mcc}
+implementing Multiscale Curvature Classification (MCC).
+% TODO: ref
+
+% v.delaunay v.voronoi New option to create Voronoi diagrams for areas.
+
+\centering
+\begin{minipage}{0.48\linewidth}
+\centering
+\includegraphics[width=0.7\textwidth]{elevation_lidar}
+\end{minipage}
+~
+\begin{minipage}{0.48\linewidth}
+\centering
+\includegraphics[width=\textwidth]{lidar_profile}
+\end{minipage}
+
+\bigskip
+
+\begin{minipage}{0.48\linewidth}
+\centering
+Digital elevation model interpolated from lidar point clouds
+using \gmodule{v.surf.rst}. Data are showing tillage in an agricultural field near Raleigh (North Carolina, USA)
+\end{minipage}
+~
+\begin{minipage}{0.48\linewidth}
+\centering
+Profile (vertical slice) of a small portion of a point cloud showing tree structure as captured by the returns
+(\gamodule{v.profile.points})
+\end{minipage}
+
+}
+
+
+
+\end{columns}
+
+\node[above left,opacity=0.5,inner sep=0pt,outer sep=4cm] at (bottomleft -| topright)%
+  {\includegraphics[width=0.3\paperwidth]{grass}};
+
+\end{document}



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