Javascript must be enabled to continue!
Model-Independent Lens Distortion Correction Based on Sub-Pixel Phase Encoding
View through CrossRef
Lens distortion can introduce deviations in visual measurement and positioning. The distortion can be minimized by optimizing the lens and selecting high-quality optical glass, but it cannot be completely eliminated. Most existing correction methods are based on accurate distortion models and stable image characteristics. However, the distortion is usually a mixture of the radial distortion and the tangential distortion of the lens group, which makes it difficult for the mathematical model to accurately fit the non-uniform distortion. This paper proposes a new model-independent lens complex distortion correction method. Taking the horizontal and vertical stripe pattern as the calibration target, the sub-pixel value distribution visualizes the image distortion, and the correction parameters are directly obtained from the pixel distribution. A quantitative evaluation method suitable for model-independent methods is proposed. The method only calculates the error based on the characteristic points of the corrected picture itself. Experiments show that this method can accurately correct distortion with only 8 pictures, with an error of 0.39 pixels, which provides a simple method for complex lens distortion correction.
Title: Model-Independent Lens Distortion Correction Based on Sub-Pixel Phase Encoding
Description:
Lens distortion can introduce deviations in visual measurement and positioning.
The distortion can be minimized by optimizing the lens and selecting high-quality optical glass, but it cannot be completely eliminated.
Most existing correction methods are based on accurate distortion models and stable image characteristics.
However, the distortion is usually a mixture of the radial distortion and the tangential distortion of the lens group, which makes it difficult for the mathematical model to accurately fit the non-uniform distortion.
This paper proposes a new model-independent lens complex distortion correction method.
Taking the horizontal and vertical stripe pattern as the calibration target, the sub-pixel value distribution visualizes the image distortion, and the correction parameters are directly obtained from the pixel distribution.
A quantitative evaluation method suitable for model-independent methods is proposed.
The method only calculates the error based on the characteristic points of the corrected picture itself.
Experiments show that this method can accurately correct distortion with only 8 pictures, with an error of 0.
39 pixels, which provides a simple method for complex lens distortion correction.
Related Results
Research on Intelligent Image Recognition Technology Based on Equalization Algorithm
Research on Intelligent Image Recognition Technology Based on Equalization Algorithm
Abstract
In the image edge distortion correction, the straight-line projection-derived edge fit is poor, resulting in large correction errors. Therefore, an image ed...
A solution method for image distortion correction model based on bilinear interpolation
A solution method for image distortion correction model based on bilinear interpolation
In the process of the image generation, because the imaging system itself has differences in terms of nonlinear or cameraman perspective, the generated image will face the geometri...
Transcriptomics extract the key chromium resistance genes of Cellulomonas
Transcriptomics extract the key chromium resistance genes of Cellulomonas
Abstract
Cellulomonas fimi Clb-11 can reduce high toxic Cr (VI) to low toxic Cr (III). In this study, transcriptomics was used to analyze the key genes, which was involved ...
Effect of Rear Engine Concept Distortion on the Aerodynamic Performance of a Fan Rotor
Effect of Rear Engine Concept Distortion on the Aerodynamic Performance of a Fan Rotor
Abstract
The civil aviation industry is facing serious environmental and energy issues, and boundary layer ingestion technology (BLI) is a viable solution. However, ...
P‐126: An Introduction to GGRB Virtual Pixel Technology
P‐126: An Introduction to GGRB Virtual Pixel Technology
The constructions of the GGRB virtual pixel and the effect on the display performance are introduced by comparing with that of the Diamond RGBG virtual pixel, a typical virtual pix...
Extraction of Color Information and Visualization of Color Differences between Digital Images through Pixel-by-Pixel Color-Difference Mapping
Extraction of Color Information and Visualization of Color Differences between Digital Images through Pixel-by-Pixel Color-Difference Mapping
A novel method of extracting color information on a pixel-by-pixel basis or by the average of the regions of interest (ROIs) from digital images is proposed and demonstrated using ...
A study of distortion correction algorithms based on aspheric fisheye lens design
A study of distortion correction algorithms based on aspheric fisheye lens design
A design method of aspheric fisheye lens has been proposed in this paper, based on the requirements of automobile surround view system. The study has designed a kind of ultra-wide-...
Single-image Shape and from Shading with Atmospheric Correction for Precise Topographic Reconstruction on Mars
Single-image Shape and from Shading with Atmospheric Correction for Precise Topographic Reconstruction on Mars
. Introduction Accurate and high-resolution digital elevation models (DEMs) are essential for Martian landing site selection and geological analysis [1]. However, existing photogra...

