Abstract :
In order to improve the precision of the line-matrix CCD edge detecting system, a sub-pixel edge detecting method based on polynomial fitting is proposed. According to the step jump characteristic of the image edge gray degree and grads, it can determine the pixel boundary of the CCD image through edge automatic detecting algorithm. Based on this, we can use the polynomial fitting method to make sub-pixel subdivision of the edge position of the image, and carry out polynomial fitting of the edge signal. Finally, use the least square method to compare the second order curve which is obtained by fitting with the threshold level, and then use it to get the formula. We can use the formula to work out the accurate position of the edge point, thereby achieve the sub-pixel edge positioning precision. The experimental results and analysis show that, compared with the threshold level comparison method, the straight line fitting method has more advantages, such as high repeated precision, good stability and so on. It can restrain the influence of random noise effectively, so it can detect the edge position of one-dimensional image effectively.
Keywords :
curve fitting; edge detection; least mean squares methods; polynomials; least square method; line-matrix CCD image; pixel boundary; polynomial fitting; straight line fitting method; subpixel edge detection; Charge coupled devices; Charge-coupled image sensors; Image edge detection; Least squares methods; Object detection; Optical sensors; Pixel; Polynomials; Signal detection; Voltage;