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- {
- "name":"{http://www.opengis.net/wps/1.0.0}Capabilities",
- "declaredType":"net.opengis.wps.v_1_0_0.WPSCapabilitiesType",
- "scope":"javax.xml.bind.JAXBElement$GlobalScope",
- "nil":false,
- "globalScope":true,
- "typeSubstituted":false,
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- "ProcessOfferings":{
- "Process":[
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.MultiReferenceInputAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"for testing multiple inputs by reference",
- "lang":null
- },
- "processVersion":"1.1.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.coordinatetransform.CoordinateTransformAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.coordinatetransform.CoordinateTransformAlgorithm",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.EchoProcess",
- "codeSpace":null
- },
- "Title":{
- "value":"Echo process",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.simplify.DouglasPeuckerAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.simplify.DouglasPeuckerAlgorithm",
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.intersection.IntersectionAlgorithm",
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- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.intersection.IntersectionAlgorithm",
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- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.LongRunningDummyTestClass",
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- "Title":{
- "value":"org.n52.wps.server.algorithm.test.LongRunningDummyTestClass",
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- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.DummyTestClass",
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- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.test.DummyTestClass",
- "lang":null
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- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.spatialquery.IntersectsAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.spatialquery.IntersectsAlgorithm",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.MultiReferenceBinaryInputAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"for testing multiple binary inputs by reference",
- "lang":null
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- "processVersion":"1.1.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.convexhull.ConvexHullAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.convexhull.ConvexHullAlgorithm",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.SimpleBufferAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.SimpleBufferAlgorithm",
- "lang":null
- },
- "processVersion":"1.1.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.JTSConvexHullAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.JTSConvexHullAlgorithm",
- "lang":null
- },
- "processVersion":"1.1.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.test.MultipleComplexInAndOutputsDummyTestClass",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.test.MultipleComplexInAndOutputsDummyTestClass",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.spatialquery.TouchesAlgorithm",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.spatialquery.TouchesAlgorithm",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"org.n52.wps.server.algorithm.raster.AddRasterValues",
- "codeSpace":null
- },
- "Title":{
- "value":"org.n52.wps.server.algorithm.raster.AddRasterValues",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"r.ros",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates three, or four raster map layers showing the base (perpendicular) rate of spread (ROS), the maximum (forward) ROS, the direction of the maximum ROS, and optionally the maximum potential spotting distance for fire spread simulation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.perturb",
- "codeSpace":null
- },
- "Title":{
- "value":"Random location perturbations of vector points.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.random",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates random 2D/3D vector points.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.random",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a raster map layer and vector point map containing randomly located points.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.resamp.rst",
- "codeSpace":null
- },
- "Title":{
- "value":"Reinterpolates and optionally computes topographic analysis from input raster map to a new raster map (possibly with different resolution) using regularized spline with tension and smoothing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.eb.evapfr",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes evaporative fraction (Bastiaanssen, 1995) and root zone soil moisture (Makin, Molden and Bastiaanssen, 2001).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.random.surface",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates random surface(s) with spatial dependence.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.qcount",
- "codeSpace":null
- },
- "Title":{
- "value":"Indices for quadrat counts of sites lists.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.covar",
- "codeSpace":null
- },
- "Title":{
- "value":"Outputs a covariance/correlation matrix for user-specified raster map layer(s).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.area",
- "codeSpace":null
- },
- "Title":{
- "value":"Prints estimation of surface area for raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.compress",
- "codeSpace":null
- },
- "Title":{
- "value":"Compresses and decompresses raster maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.pca",
- "codeSpace":null
- },
- "Title":{
- "value":"Principal components analysis (PCA) for image processing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.extrude",
- "codeSpace":null
- },
- "Title":{
- "value":"Optionally the height can be derived from sampling of elevation raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.alloc",
- "codeSpace":null
- },
- "Title":{
- "value":"center node must be opened (costs >= 0). Costs of center node are used in calculation",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.timetable",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds shortest path using timetables.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.proj",
- "codeSpace":null
- },
- "Title":{
- "value":"Re-projects a raster map from given location to the current location.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.region",
- "codeSpace":null
- },
- "Title":{
- "value":"Sets the boundary definitions for a raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.to.vect",
- "codeSpace":null
- },
- "Title":{
- "value":"Converts a raster map into a vector map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.db.select",
- "codeSpace":null
- },
- "Title":{
- "value":"Prints vector map attributes.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.segment",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates points/segments from input vector lines and positions.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.rgb.his",
- "codeSpace":null
- },
- "Title":{
- "value":"Transforms raster maps from RGB (Red-Green-Blue) color space to HIS (Hue-Intensity-Saturation) color space.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lrs.segment",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates points/segments from input lines, linear reference system and positions read from stdin or a file.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.path",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds shortest path on vector network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.patch",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a new vector map by combining other vector maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.landsat.acca",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs Landsat TM/ETM+ Automatic Cloud Cover Assessment (ACCA).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.random",
- "codeSpace":null
- },
- "Title":{
- "value":"Produces a raster surface map of uniform random deviates with defined range.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.overlay",
- "codeSpace":null
- },
- "Title":{
- "value":"Overlays two vector maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.spread",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates a raster map of the cumulative time of spread, given raster maps containing the rates of spread (ROS), the ROS directions and the spread origins. It optionally produces raster maps to contain backlink UTM coordinates for tracing spread paths. Usable for fire spread simulations.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.spanningtree",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes minimum spanning tree for the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.to.rast",
- "codeSpace":null
- },
- "Title":{
- "value":"Converts 3D raster maps to 2D raster maps",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.support",
- "codeSpace":null
- },
- "Title":{
- "value":"Allows creation and/or modification of raster map layer support files.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.kcv",
- "codeSpace":null
- },
- "Title":{
- "value":"Randomly partition points into test/train sets.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lrs.label",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates stationing from input lines, and linear reference system.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.contour",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates surface raster map from rasterized contours.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.info",
- "codeSpace":null
- },
- "Title":{
- "value":"Outputs basic information about a user-specified 3D raster map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.landsat.toar",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates top-of-atmosphere radiance or reflectance and temperature for Landsat MSS/TM/ETM+/OLI",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.class",
- "codeSpace":null
- },
- "Title":{
- "value":"Classifies attribute data, e.g. for thematic mapping",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.horizon",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes horizon angle height from a digital elevation model. The module has two different modes of operation: 1. Computes the entire horizon around a single point whose coordinates are given with the 'coord' option. The horizon height (in radians). 2. Computes one or more raster maps of the horizon height in a single direction. The input for this is the angle (in degrees), which is measured counterclockwise with east=0, north=90 etc. The output is the horizon height in radians.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.water.outlet",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates watershed basins from a drainage direction map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.his",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates red, green and blue raster map layers combining hue, intensity and saturation (HIS) values from user-specified input raster map layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.his.rgb",
- "codeSpace":null
- },
- "Title":{
- "value":"Transforms raster maps from HIS (Hue-Intensity-Saturation) color space to RGB (Red-Green-Blue) color space.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.timestamp",
- "codeSpace":null
- },
- "Title":{
- "value":"Print/add/remove a timestamp for a 3D raster map",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.resamp.bspline",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs bilinear or bicubic spline interpolation with Tykhonov regularization.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.connectivity",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes vertex connectivity between two sets of nodes in the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.profile",
- "codeSpace":null
- },
- "Title":{
- "value":"Outputs the raster map layer values lying on user-defined line(s).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.mfilter",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs raster map matrix filter.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.to.3d",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs transformation of 2D vector features to 3D.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.padrange",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates range of patch area size on a raster map",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.select",
- "codeSpace":null
- },
- "Title":{
- "value":"Selects features from vector map (A) by features from other vector map (B).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.to.rast3",
- "codeSpace":null
- },
- "Title":{
- "value":"Converts a vector map (only points) into a 3D raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.category",
- "codeSpace":null
- },
- "Title":{
- "value":"Attaches, deletes or reports vector categories to map geometry.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.resamp.stats",
- "codeSpace":null
- },
- "Title":{
- "value":"Resamples raster map layers to a coarser grid using aggregation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.vi",
- "codeSpace":null
- },
- "Title":{
- "value":"Uses red and nir bands mostly, and some indices require additional bands.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.flow",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes flowlines, flowpath lengths, and flowaccumulation (contributing areas) from a elevation raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.spreadpath",
- "codeSpace":null
- },
- "Title":{
- "value":"Recursively traces the least cost path backwards to cells from which the cumulative cost was determined.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.to.db",
- "codeSpace":null
- },
- "Title":{
- "value":"Populates attribute values from vector features.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.normal",
- "codeSpace":null
- },
- "Title":{
- "value":"Tests for normality for vector points.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.mapcalc",
- "codeSpace":null
- },
- "Title":{
- "value":"Raster map calculator.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.recode",
- "codeSpace":null
- },
- "Title":{
- "value":"Recodes categorical raster maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.resample",
- "codeSpace":null
- },
- "Title":{
- "value":"GRASS raster map layer data resampling capability.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.idw",
- "codeSpace":null
- },
- "Title":{
- "value":"Surface interpolation utility for raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.gensigset",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates statistics for i.smap from raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.allpairs",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes the shortest path between all pairs of nodes in the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.simpson",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates Simpson's diversity index on a raster map",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.convert",
- "codeSpace":null
- },
- "Title":{
- "value":"Imports older versions of GRASS vector maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.distance",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds the shortest paths from each 'from' point to the nearest 'to' feature and various information about this relation are uploaded to the attribute table.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.split",
- "codeSpace":null
- },
- "Title":{
- "value":"Splits vector lines to shorter segments.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.sun",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes direct (beam), diffuse and reflected solar irradiation raster maps for given day, latitude, surface and atmospheric conditions. Solar parameters (e.g. sunrise, sunset times, declination, extraterrestrial irradiance, daylight length) are saved in the map history file. Alternatively, a local time can be specified to compute solar incidence angle and/or irradiance raster maps. The shadowing effect of the topography is optionally incorporated.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.walk",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes anisotropic cumulative cost of moving between different geographic locations on an input elevation raster map whose cell category values represent elevation combined with an input raster map layer whose cell values represent friction cost.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.target",
- "codeSpace":null
- },
- "Title":{
- "value":"Targets an imagery group to a GRASS location and mapset.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.visibility",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs visibility graph construction.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.statistics",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates category or object oriented statistics.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.to.rast",
- "codeSpace":null
- },
- "Title":{
- "value":"Converts (rasterize) a vector map into a raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.patch",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a composite raster map layer by using known category values from one (or more) map layer(s) to fill in areas of \"no data\" in another map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.edit",
- "codeSpace":null
- },
- "Title":{
- "value":"Edits a vector map, allows adding, deleting and modifying selected vector features.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.patchnum",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates patch number index on a raster map, using a 4 neighbour algorithm.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.watershed",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates hydrological parameters and RUSLE factors.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.shape",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates shape index on a raster map",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.surf.idw",
- "codeSpace":null
- },
- "Title":{
- "value":"Provides surface interpolation from vector point data by Inverse Distance Squared Weighting.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.gwflow",
- "codeSpace":null
- },
- "Title":{
- "value":"Numerical calculation program for transient, confined groundwater flow in three dimensions.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.sim.water",
- "codeSpace":null
- },
- "Title":{
- "value":"Overland flow hydrologic simulation using path sampling method (SIMWE).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.resamp.interp",
- "codeSpace":null
- },
- "Title":{
- "value":"Resamples raster map to a finer grid using interpolation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.transform",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs an affine transformation (shift, scale and rotate) on vector map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs network maintenance.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.transect",
- "codeSpace":null
- },
- "Title":{
- "value":"Outputs raster map layer values lying along user defined transect line(s).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.univar",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates univariate statistics from the non-null cells of a raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.modis.qc",
- "codeSpace":null
- },
- "Title":{
- "value":"Extracts quality control parameters from Modis QC layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.terraflow",
- "codeSpace":null
- },
- "Title":{
- "value":"Flow computation for massive grids (float version).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.eb.soilheatflux",
- "codeSpace":null
- },
- "Title":{
- "value":"Soil heat flux approximation (Bastiaanssen, 1995).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.null",
- "codeSpace":null
- },
- "Title":{
- "value":"Manages NULL-values of given raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.lake",
- "codeSpace":null
- },
- "Title":{
- "value":"Fills lake at given point to given level.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.timestamp",
- "codeSpace":null
- },
- "Title":{
- "value":"Print/add/remove a timestamp for a raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.generalize",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs vector based generalization.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.build",
- "codeSpace":null
- },
- "Title":{
- "value":"Optionaly also checks for topological errors.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.fractal",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a fractal surface of a given fractal dimension.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.sample",
- "codeSpace":null
- },
- "Title":{
- "value":"Samples a raster map at vector point locations.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.emissivity",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes emissivity from NDVI, generic method for sparse land.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.vol.rst",
- "codeSpace":null
- },
- "Title":{
- "value":"Interpolates point data to a 3D raster map using regularized spline with tension (RST) algorithm.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.series",
- "codeSpace":null
- },
- "Title":{
- "value":"Makes each output cell value a function of the values assigned to the corresponding cells in the input raster map layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.param.scale",
- "codeSpace":null
- },
- "Title":{
- "value":"Uses a multi-scale approach by taking fitting quadratic parameters to any size window (via least squares).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.grow.distance",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates a raster map containing distances to nearest raster features.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.mode",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds the mode of values in a cover map within areas assigned the same category value in a user-specified base map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.reclass",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a new raster map whose category values are based upon a reclassification of the categories in an existing raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.topmodel",
- "codeSpace":null
- },
- "Title":{
- "value":"Simulates TOPMODEL which is a physically based hydrologic model.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.voronoi",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a Voronoi diagram in current region from an input vector map containing points or centroids.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.mapcalc",
- "codeSpace":null
- },
- "Title":{
- "value":"Raster map calculator.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.fill.dir",
- "codeSpace":null
- },
- "Title":{
- "value":"Filters and generates a depressionless elevation map and a flow direction map from a given elevation raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.edgedensity",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates edge density index on a raster map, using a 4 neighbour algorithm",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.gensig",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates statistics for i.maxlik from raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.patchdensity",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates patch density index on a raster map, using a 4 neighbour algorithm",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.components",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes strongly and weakly connected components in the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.mask",
- "codeSpace":null
- },
- "Title":{
- "value":"Establishes the current working 3D raster mask.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.db.connect",
- "codeSpace":null
- },
- "Title":{
- "value":"Prints/sets DB connection for a vector map to attribute table.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.ifft",
- "codeSpace":null
- },
- "Title":{
- "value":"Inverse Fast Fourier Transform (IFFT) for image processing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.cost",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a raster map showing the cumulative cost of moving between different geographic locations on an input raster map whose cell category values represent cost.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.contour",
- "codeSpace":null
- },
- "Title":{
- "value":"Produces a vector map of specified contours from a raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.category",
- "codeSpace":null
- },
- "Title":{
- "value":"Manages category values and labels associated with user-specified raster map layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.iso",
- "codeSpace":null
- },
- "Title":{
- "value":"Splits net to bands between cost isolines (direction from centre). Centre node must be opened (costs >= 0). Costs of centre node are used in calculation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.zc",
- "codeSpace":null
- },
- "Title":{
- "value":"Zero-crossing \"edge detection\" raster function for image processing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.rectify",
- "codeSpace":null
- },
- "Title":{
- "value":"Rectifies an image by computing a coordinate transformation for each pixel in the image based on the control points.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.drape",
- "codeSpace":null
- },
- "Title":{
- "value":"Converts 2D vector features to 3D by sampling of elevation raster map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.solute.transport",
- "codeSpace":null
- },
- "Title":{
- "value":"Numerical calculation program for transient, confined and unconfined solute transport in two dimensions",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lidar.edgedetection",
- "codeSpace":null
- },
- "Title":{
- "value":"Detects the object's edges from a LIDAR data set.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.quantile",
- "codeSpace":null
- },
- "Title":{
- "value":"Compute quantiles using two passes.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.surf.bspline",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs bicubic or bilinear spline interpolation with Tykhonov regularization.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.null",
- "codeSpace":null
- },
- "Title":{
- "value":"Explicitly create the 3D NULL-value bitmap file.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.cca",
- "codeSpace":null
- },
- "Title":{
- "value":"Canonical components analysis (CCA) program for image processing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.neighbors",
- "codeSpace":null
- },
- "Title":{
- "value":"Makes each cell category value a function of the category values assigned to the cells around it, and stores new cell values in an output raster map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.support",
- "codeSpace":null
- },
- "Title":{
- "value":"Updates vector map metadata.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lidar.correction",
- "codeSpace":null
- },
- "Title":{
- "value":"Correction of the v.lidar.growing output. It is the last of the three algorithms for LIDAR filtering.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.rescale",
- "codeSpace":null
- },
- "Title":{
- "value":"Rescales the range of category values in a raster map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.salesman",
- "codeSpace":null
- },
- "Title":{
- "value":"Note that TSP is NP-hard, heuristic algorithm is used by this module and created cycle may be sub optimal",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.li.padsd",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates standard deviation of patch area a raster map",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.reclass",
- "codeSpace":null
- },
- "Title":{
- "value":"Changes vector category values for an existing vector map according to results of SQL queries or a value in attribute table column.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.flow",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes the maximum flow between two sets of nodes in the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.kernel",
- "codeSpace":null
- },
- "Title":{
- "value":"Density is computed using a moving kernel. Optionally generates a vector density map on a vector network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.surf.rst",
- "codeSpace":null
- },
- "Title":{
- "value":"Spatial approximation and topographic analysis from given point or isoline data in vector format to floating point raster format using regularized spline with tension.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.to.points",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates points along input lines in new vector map with 2 layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lidar.growing",
- "codeSpace":null
- },
- "Title":{
- "value":"Building contour determination and Region Growing algorithm for determining the building inside",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.distance",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds the nearest element in vector map 'to' for elements in vector map 'from'.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.extract",
- "codeSpace":null
- },
- "Title":{
- "value":"Selects vector features from an existing vector map and creates a new vector map containing only the selected features.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.gwflow",
- "codeSpace":null
- },
- "Title":{
- "value":"Numerical calculation program for transient, confined and unconfined groundwater flow in two dimensions.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.rescale.eq",
- "codeSpace":null
- },
- "Title":{
- "value":"Rescales histogram equalized the range of category values in a raster map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.random.cells",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates random cell values with spatial dependence.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.net.centrality",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes degree, centrality, betweeness, closeness and eigenvector centrality measures in the network.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.surf.gauss",
- "codeSpace":null
- },
- "Title":{
- "value":"Mean and standard deviation of gaussian deviates can be expressed by the user.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.biomass",
- "codeSpace":null
- },
- "Title":{
- "value":"Computes biomass growth, precursor of crop yield calculation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.slope.aspect",
- "codeSpace":null
- },
- "Title":{
- "value":"Aspect is calculated counterclockwise from east.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.atcorr",
- "codeSpace":null
- },
- "Title":{
- "value":"6S - Second Simulation of Satellite Signal in the Solar Spectrum.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.volume",
- "codeSpace":null
- },
- "Title":{
- "value":"Optionally produces a GRASS vector points map containing the calculated centroids of these clumps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"m.measure",
- "codeSpace":null
- },
- "Title":{
- "value":"Measures the lengths and areas of features.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.circle",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a raster map containing concentric rings around a given point.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.support.stats",
- "codeSpace":null
- },
- "Title":{
- "value":"Update raster map statistics",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.univar",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates univariate statistics from the non-null 3d cells of a raster3d map.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r3.stats",
- "codeSpace":null
- },
- "Title":{
- "value":"Generates volume statistics for 3D raster maps.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.mkgrid",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a vector map of a user-defined grid.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.eb.eta",
- "codeSpace":null
- },
- "Title":{
- "value":"Actual evapotranspiration for diurnal period (Bastiaanssen, 1995).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.cross",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a cross product of the category values from multiple raster map layers.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.fft",
- "codeSpace":null
- },
- "Title":{
- "value":"Fast Fourier Transform (FFT) for image processing.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.delaunay",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates a Delaunay triangulation from an input vector map containing points or centroids.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.describe",
- "codeSpace":null
- },
- "Title":{
- "value":"Prints terse list of category values found in a raster map layer.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.regression.line",
- "codeSpace":null
- },
- "Title":{
- "value":"Calculates linear regression from two raster maps: y = a + b*x.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"r.sim.sediment",
- "codeSpace":null
- },
- "Title":{
- "value":"Sediment transport and erosion/deposition simulation using path sampling method (SIMWE).",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"m.cogo",
- "codeSpace":null
- },
- "Title":{
- "value":"It assumes a cartesian coordinate system",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.smap",
- "codeSpace":null
- },
- "Title":{
- "value":"Performs contextual image classification using sequential maximum a posteriori (SMAP) estimation.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.lrs.where",
- "codeSpace":null
- },
- "Title":{
- "value":"Finds line id and real km+offset for given points in vector map using linear reference system.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"i.maxlik",
- "codeSpace":null
- },
- "Title":{
- "value":"Classification is based on the spectral signature information generated by either i.cluster, i.class, or i.gensig.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
- "value":"v.parallel",
- "codeSpace":null
- },
- "Title":{
- "value":"Creates parallel line to input vector lines.",
- "lang":null
- },
- "processVersion":"1"
- },
- {
- "Identifier":{
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- "lang":null
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- "processVersion":"1"
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- "processVersion":"1"
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- "processVersion":"1"
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- "processVersion":"1"
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1"
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- "Identifier":{
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- "processVersion":"1"
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- "processVersion":"1"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
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- "processVersion":"1"
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- "Identifier":{
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- "codeSpace":null
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- "processVersion":"1.0.0"
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- {
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
- "value":"randomvector",
- "codeSpace":null
- },
- "Title":{
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- "lang":null
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
- "value":"merge",
- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
- "value":"Add coordinates to points",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
- "value":"Generate alternative routes",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"tvi",
- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
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- "codeSpace":null
- },
- "Title":{
- "value":"Complete grid",
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- },
- "processVersion":"1.0.0"
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- {
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"vectorfieldcorrelation",
- "codeSpace":null
- },
- "Title":{
- "value":"Correlation between fields",
- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
- "value":"elevationreliefindex",
- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
- "value":"watershedsbysize",
- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- "codeSpace":null
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- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
- },
- {
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "lang":null
- },
- "processVersion":"1.0.0"
- },
- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
- },
- {
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- "codeSpace":null
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- "processVersion":"1.0.0"
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- {
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- "codeSpace":null
- },
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
- "value":"cva",
- "codeSpace":null
- },
- "Title":{
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
- },
- "Title":{
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- "processVersion":"1.0.0"
- },
- {
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- "Title":{
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- "processVersion":"1.0.0"
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- {
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- },
- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "processVersion":"1.0.0"
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- "codeSpace":null
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- "processVersion":"1.0.0"
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- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- {
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- "Title":{
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- "processVersion":"1.0.0"
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- {
- "Identifier":{
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- "codeSpace":null
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- "Title":{
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- "processVersion":"1.0.0"
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- {
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- },
- "Title":{
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- "processVersion":"1.0.0"
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- "processVersion":"1.0.0"
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- {
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