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ee.Geometry.MultiPoint.symmetricDifference
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Devuelve la diferencia simétrica entre dos geometrías.
Uso | Muestra |
---|
MultiPoint.symmetricDifference(right, maxError, proj) | Geometría |
Argumento | Tipo | Detalles |
---|
esta: left | Geometría | Es la geometría que se usa como el operando izquierdo de la operación. |
right | Geometría | Es la geometría que se usa como operando derecho de la operación. |
maxError | ErrorMargin, valor predeterminado: null | Es la cantidad máxima de error que se tolera cuando se realiza cualquier reproyección necesaria. |
proj | Proyección, valor predeterminado: nulo | Es la proyección en la que se realizará la operación. Si no se especifica, la operación se realizará en un sistema de coordenadas esféricas, y las distancias lineales se expresarán en metros sobre la esfera. |
Ejemplos
Editor de código (JavaScript)
// Define a MultiPoint object.
var multiPoint = ee.Geometry.MultiPoint([[-122.082, 37.420], [-122.081, 37.426]]);
// Define other inputs.
var inputGeom = ee.Geometry.BBox(-122.085, 37.415, -122.075, 37.425);
// Apply the symmetricDifference method to the MultiPoint object.
var multiPointSymmetricDifference = multiPoint.symmetricDifference({'right': inputGeom, 'maxError': 1});
// Print the result to the console.
print('multiPoint.symmetricDifference(...) =', multiPointSymmetricDifference);
// Display relevant geometries on the map.
Map.setCenter(-122.085, 37.422, 15);
Map.addLayer(multiPoint,
{'color': 'black'},
'Geometry [black]: multiPoint');
Map.addLayer(inputGeom,
{'color': 'blue'},
'Parameter [blue]: inputGeom');
Map.addLayer(multiPointSymmetricDifference,
{'color': 'red'},
'Result [red]: multiPoint.symmetricDifference');
Configuración de Python
Consulta la página
Entorno de Python para obtener información sobre la API de Python y el uso de geemap
para el desarrollo interactivo.
import ee
import geemap.core as geemap
Colab (Python)
# Define a MultiPoint object.
multipoint = ee.Geometry.MultiPoint([[-122.082, 37.420], [-122.081, 37.426]])
# Define other inputs.
input_geom = ee.Geometry.BBox(-122.085, 37.415, -122.075, 37.425)
# Apply the symmetricDifference method to the MultiPoint object.
multipoint_symmetric_difference = multipoint.symmetricDifference(
right=input_geom, maxError=1
)
# Print the result.
display(
'multipoint.symmetricDifference(...) =', multipoint_symmetric_difference
)
# Display relevant geometries on the map.
m = geemap.Map()
m.set_center(-122.085, 37.422, 15)
m.add_layer(multipoint, {'color': 'black'}, 'Geometry [black]: multipoint')
m.add_layer(input_geom, {'color': 'blue'}, 'Parameter [blue]: input_geom')
m.add_layer(
multipoint_symmetric_difference,
{'color': 'red'},
'Result [red]: multipoint.symmetricDifference',
)
m
Salvo que se indique lo contrario, el contenido de esta página está sujeto a la licencia Atribución 4.0 de Creative Commons, y los ejemplos de código están sujetos a la licencia Apache 2.0. Para obtener más información, consulta las políticas del sitio de Google Developers. Java es una marca registrada de Oracle o sus afiliados.
Última actualización: 2025-07-26 (UTC)
[null,null,["Última actualización: 2025-07-26 (UTC)"],[[["\u003cp\u003eReturns the geometry that represents the portions of two geometries that do not intersect with each other.\u003c/p\u003e\n"],["\u003cp\u003eAccepts a Geometry as the right operand and optional \u003ccode\u003emaxError\u003c/code\u003e and \u003ccode\u003eproj\u003c/code\u003e parameters for customization.\u003c/p\u003e\n"],["\u003cp\u003eCan be applied to MultiPoint geometries to identify areas unique to each input.\u003c/p\u003e\n"],["\u003cp\u003eThe result is a new Geometry object representing the symmetric difference.\u003c/p\u003e\n"]]],["The `symmetricDifference` method calculates the symmetric difference between two geometries (`left` and `right`). It returns a new geometry representing the areas unique to each input. The method accepts an optional `maxError` parameter for reprojection tolerance and a `proj` parameter to specify the operation's projection. It is called on a MultiPoint geometry and can be used to compare it with another input geometry, as demonstrated in the JavaScript and Python examples.\n"],null,["# ee.Geometry.MultiPoint.symmetricDifference\n\nReturns the symmetric difference between two geometries.\n\n\u003cbr /\u003e\n\n| Usage | Returns |\n|------------------------------------------------------------------|----------|\n| MultiPoint.symmetricDifference`(right, `*maxError* `, `*proj*`)` | Geometry |\n\n| Argument | Type | Details |\n|--------------|----------------------------|---------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------|\n| this: `left` | Geometry | The geometry used as the left operand of the operation. |\n| `right` | Geometry | The geometry used as the right operand of the operation. |\n| `maxError` | ErrorMargin, default: null | The maximum amount of error tolerated when performing any necessary reprojection. |\n| `proj` | Projection, default: null | The projection in which to perform the operation. If not specified, the operation will be performed in a spherical coordinate system, and linear distances will be in meters on the sphere. |\n\nExamples\n--------\n\n### Code Editor (JavaScript)\n\n```javascript\n// Define a MultiPoint object.\nvar multiPoint = ee.Geometry.MultiPoint([[-122.082, 37.420], [-122.081, 37.426]]);\n\n// Define other inputs.\nvar inputGeom = ee.Geometry.BBox(-122.085, 37.415, -122.075, 37.425);\n\n// Apply the symmetricDifference method to the MultiPoint object.\nvar multiPointSymmetricDifference = multiPoint.symmetricDifference({'right': inputGeom, 'maxError': 1});\n\n// Print the result to the console.\nprint('multiPoint.symmetricDifference(...) =', multiPointSymmetricDifference);\n\n// Display relevant geometries on the map.\nMap.setCenter(-122.085, 37.422, 15);\nMap.addLayer(multiPoint,\n {'color': 'black'},\n 'Geometry [black]: multiPoint');\nMap.addLayer(inputGeom,\n {'color': 'blue'},\n 'Parameter [blue]: inputGeom');\nMap.addLayer(multiPointSymmetricDifference,\n {'color': 'red'},\n 'Result [red]: multiPoint.symmetricDifference');\n```\nPython setup\n\nSee the [Python Environment](/earth-engine/guides/python_install) page for information on the Python API and using\n`geemap` for interactive development. \n\n```python\nimport ee\nimport geemap.core as geemap\n```\n\n### Colab (Python)\n\n```python\n# Define a MultiPoint object.\nmultipoint = ee.Geometry.MultiPoint([[-122.082, 37.420], [-122.081, 37.426]])\n\n# Define other inputs.\ninput_geom = ee.Geometry.BBox(-122.085, 37.415, -122.075, 37.425)\n\n# Apply the symmetricDifference method to the MultiPoint object.\nmultipoint_symmetric_difference = multipoint.symmetricDifference(\n right=input_geom, maxError=1\n)\n\n# Print the result.\ndisplay(\n 'multipoint.symmetricDifference(...) =', multipoint_symmetric_difference\n)\n\n# Display relevant geometries on the map.\nm = geemap.Map()\nm.set_center(-122.085, 37.422, 15)\nm.add_layer(multipoint, {'color': 'black'}, 'Geometry [black]: multipoint')\nm.add_layer(input_geom, {'color': 'blue'}, 'Parameter [blue]: input_geom')\nm.add_layer(\n multipoint_symmetric_difference,\n {'color': 'red'},\n 'Result [red]: multipoint.symmetricDifference',\n)\nm\n```"]]