Retinex算法实现

Ayd*_*kov 2 .net c# image image-processing image-enhancement

我需要在C#中实现Single Scale retinex和多尺度retinex算法,
我搜索了一下但是找不到任何有用的练习项目和代码的艺术
我正确理解我应该:

  1. 将RGB转换为YUV
  2. 使用高斯模糊滤镜模糊图像
  3. 使用I'(x,y)= 255*log10(I(x,y)/ G(x,y))+ 127.5
    I - 是照明,G - 高斯核,I' - 结果图像
  4. Сonvert回YUV到RGB

此代码无法正常工作

 public static Image<Bgr, byte> SingleScaleRetinex(this Image<Bgr, byte> img, int gaussianKernelSize, double sigma)
            {
                var radius = gaussianKernelSize / 2;
                var kernelSize = 2 * radius + 1;

                var ycc = img.Convert<Ycc, byte>();

                var sum = 0f;
                var gaussKernel = new float[kernelSize * kernelSize];
                for (int i = -radius, k = 0; i <= radius; i++, k++)
                {
                    for (int j = -radius; j <= radius; j++)
                    {
                        var val = (float)Math.Exp(-(i * i + j * j) / (sigma * sigma));
                        gaussKernel[k] = val;
                        sum += val;
                    }
                }
                for (int i = 0; i < gaussKernel.Length; i++)
                    gaussKernel[i] /= sum;

                var gray = new Image<Gray, byte>(ycc.Size);
                CvInvoke.cvSetImageCOI(ycc, 1);
                CvInvoke.cvCopy(ycc, gray, IntPtr.Zero);

                // ??????? ???????????
                var width = img.Width;
                var height = img.Height;

                var bmp = gray.Bitmap;
                var bitmapData = bmp.LockBits(new Rectangle(Point.Empty, gray.Size), ImageLockMode.ReadWrite, PixelFormat.Format8bppIndexed);

                unsafe
                {
                    for (var y = 0; y < height; y++)
                    {
                        var row = (byte*)bitmapData.Scan0 + y * bitmapData.Stride;
                        for (var x = 0; x < width; x++)
                        {
                            var color = row + x;

                            float val = 0;

                            for (int i = -radius, k = 0; i <= radius; i++, k++)
                            {
                                var ii = y + i;
                                if (ii < 0) ii = 0; if (ii >= height) ii = height - 1;

                                var row2 = (byte*)bitmapData.Scan0 + ii * bitmapData.Stride;
                                for (int j = -radius; j <= radius; j++)
                                {
                                    var jj = x + j;
                                    if (jj < 0) jj = 0; if (jj >= width) jj = width - 1;

                                    val += *(row2 + jj) * gaussKernel[k];

                                }
                            }

                            var newColor = 127.5 + 255 * Math.Log(*color / val);
                            if (newColor > 255)
                                newColor = 255;
                            else if (newColor < 0)
                                newColor = 0;
                            *color = (byte)newColor;
                        }
                    }
                }
                bmp.UnlockBits(bitmapData);

                CvInvoke.cvCopy(gray, ycc, IntPtr.Zero);
                CvInvoke.cvSetImageCOI(ycc, 0);

                return ycc.Convert<Bgr, byte>();

            }
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daj*_*ric 5

请看:http: //www.fer.unizg.hr/ipg/resources/color_constancy

这些算法是Retinex算法的修改(速度提高)虽然作者给了他们有趣的名字:)

有一个完整的源代码(C++,但编写得非常好).