LEADTOOLS Image Processing (Leadtools.ImageProcessing.Core assembly)

AnisotropicDiffusionCommand Constructor(Int32,Int32,Single,Single,Single,Single,Int32)

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Example 







Number of iterations the filter will perform.
Size of smoothing kernel which is performed on image.
Defines the length of the vector field.
Increasing this variable will increase the parallel diffusion.
Increasing this variable decreases the one sided diffusion.
Max edge size which all edge values bellow will be included in the operation of the filter.
The number of iterations before each consecutive update of the image.
Initializes a new AnisotropicDiffusionCommand class object with explicit parameters.
Syntax
public AnisotropicDiffusionCommand( 
   int iterations,
   int smoothing,
   float timestep,
   float minvariation,
   float maxvariation,
   float edgeheight,
   int update
)
'Declaration
 
Public Function New( _
   ByVal iterations As Integer, _
   ByVal smoothing As Integer, _
   ByVal timestep As Single, _
   ByVal minvariation As Single, _
   ByVal maxvariation As Single, _
   ByVal edgeheight As Single, _
   ByVal update As Integer _
)
'Usage
 
Dim iterations As Integer
Dim smoothing As Integer
Dim timestep As Single
Dim minvariation As Single
Dim maxvariation As Single
Dim edgeheight As Single
Dim update As Integer
 
Dim instance As New AnisotropicDiffusionCommand(iterations, smoothing, timestep, minvariation, maxvariation, edgeheight, update)
public AnisotropicDiffusionCommand( 
   int iterations,
   int smoothing,
   float timestep,
   float minvariation,
   float maxvariation,
   float edgeheight,
   int update
)

            

            
function AnisotropicDiffusionCommand( 
   iterations ,
   smoothing ,
   timestep ,
   minvariation ,
   maxvariation ,
   edgeheight ,
   update 
)
public:
AnisotropicDiffusionCommand( 
   int iterations,
   int smoothing,
   float timestep,
   float minvariation,
   float maxvariation,
   float edgeheight,
   int update
)

Parameters

iterations
Number of iterations the filter will perform.
smoothing
Size of smoothing kernel which is performed on image.
timestep
Defines the length of the vector field.
minvariation
Increasing this variable will increase the parallel diffusion.
maxvariation
Increasing this variable decreases the one sided diffusion.
edgeheight
Max edge size which all edge values bellow will be included in the operation of the filter.
update
The number of iterations before each consecutive update of the image.
Example
Copy Code  
Imports Leadtools
Imports Leadtools.Codecs
Imports Leadtools.ImageProcessing.Core

Public Sub AnisotropicDiffusionCommandExample()
   Dim codecs As New RasterCodecs()
   codecs.ThrowExceptionsOnInvalidImages = True

   Dim leadImage As RasterImage = codecs.Load(Path.Combine(LEAD_VARS.ImagesDir, "Master.jpg"))

   ' Prepare the command
   Dim command As AnisotropicDiffusionCommand = New AnisotropicDiffusionCommand
   'Apply 
   command.Iterations = 20
   command.Smoothing = 1
   command.TimeStep = 100.0F
   command.MinVariation = 0.5F
   command.MaxVariation = 0.8F
   command.EdgeHeight = 4.0F
   command.Update = 10


End Sub

Public NotInheritable Class LEAD_VARS
Public Const ImagesDir As String = "C:\Users\Public\Documents\LEADTOOLS Images"
End Class
using Leadtools;
using Leadtools.Codecs;
using Leadtools.ImageProcessing.Core;

public void AnisotropicDiffusionCommandExample()
{
   // Load an image
   RasterCodecs codecs = new RasterCodecs();
   codecs.ThrowExceptionsOnInvalidImages = true;

   RasterImage image = codecs.Load(Path.Combine(LEAD_VARS.ImagesDir, "Master.jpg"));

   // Prepare the command
   AnisotropicDiffusionCommand command = new AnisotropicDiffusionCommand();
   //Apply 
   command.Iterations = 20;
   command.Smoothing = 1;
   command.TimeStep = 100.0f;
   command.MinVariation = 0.5f;
   command.MaxVariation = 0.8f;
   command.EdgeHeight = 4.0f;
   command.Update = 10;
   command.Run(image);
}

static class LEAD_VARS
{
public const string ImagesDir = @"C:\Users\Public\Documents\LEADTOOLS Images";
}
function AnisotropicDiffusionCommandExample()
{
   // Load an image
   var codecs = new Leadtools.Codecs.RasterCodecs();
   codecs.ThrowExceptionsOnInvalidImages = true;

   // Load the image
   var srcFileName = "Assets\\Image1.cmp";
   return Tools.AppInstallFolder().getFileAsync(srcFileName).then(function (loadFile) {
      return codecs.loadAsync(Leadtools.LeadStreamFactory.create(loadFile));
   }).then(function (image){
      // Prepare the command
      var command = new Leadtools.ImageProcessing.Core.AnisotropicDiffusionCommand();
      //Apply 
      command.iterations = 20;
      command.smoothing = 1;
      command.timeStep = 100.0;
      command.minVariation = 0.5;
      command.maxVariation = 0.8;
      command.edgeHeight = 4.0;
      command.update = 10;
      command.run(image);
   });
}
using Leadtools;
using Leadtools.Codecs;
using Leadtools.ImageProcessing.Core;

      
public async Task AnisotropicDiffusionCommandExample()
{
   // Load an image
   RasterCodecs codecs = new RasterCodecs();
   codecs.ThrowExceptionsOnInvalidImages = true;
   // Load the image
   string srcFileName = @"Assets\Image1.cmp";
   StorageFile loadFile = await Tools.AppInstallFolder.GetFileAsync(srcFileName);
   RasterImage image = await codecs.LoadAsync(LeadStreamFactory.Create(loadFile));

   // Prepare the command
   AnisotropicDiffusionCommand command = new AnisotropicDiffusionCommand();
   //Apply 
   command.Iterations = 20;
   command.Smoothing = 1;
   command.TimeStep = 100.0f;
   command.MinVariation = 0.5f;
   command.MaxVariation = 0.8f;
   command.EdgeHeight = 4.0f;
   command.Update = 10;
   command.Run(image);
}
Requirements

Target Platforms

See Also

Reference

AnisotropicDiffusionCommand Class
AnisotropicDiffusionCommand Members
Overload List

 

 


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