3d Facial Surface Reconstruction Using Integrated Orthographic Models to Approximate Perspective Projection Model
نویسندگان
چکیده
This study develops a 3D facial reconstruction system in which the perspective projection model is approximated by applying a factorization method to the piecewise orthographic projection model. The proposed system comprises five modules. The first and second modules reconstruct the 3D facial surface using a factorization method based on an orthographic projection model. However, the facial video is taken based on the perspective projection model rather than an orthographic projection model. Thus, to compensate for the difference between the two models, the third module is developed to approximate the perspective projection model by dividing the 3D facial surface into small groups and then reconstructs each group in orthographic projection module. These reconstructed results are then integrated to form a complete 3D facial surface, which is almost as accurate as the reconstruction result using a perspective projection model. The fourth module implements a novel smoothing process for the 3D facial surface by interpolating additional vertices from the vectors of the existing 3D vertices. Finally, the fifth module utilizes a new solution to overcome the missing point problem, which is caused by occlusion at high pan rotation angles, commonly arising in 3D reconstruction applications. The experimental results show that the proposed system achieves a promising result within a relatively short time.
منابع مشابه
Using the Orthographic Projection Model to Approximate the Perspective Projection Model for 3D Facial Reconstruction
This study develops a 3D facial reconstruction system, which consists of five modules, using the orthographic projection model to approximate the perspective projection model. The first module identifies a number of feature points on the face and tracks these feature points over a sequence of facial images by the optical flow technique. The second module applies the factorization method to the ...
متن کاملArchitectural Scene Reconstruction from single or Multiple Uncalibrated Images
In this paper we present a system for the reconstruction of 3D models of architectural scenes from single or multiple uncalibrated images. The partial 3D model of a building is recovered from a single image using geometric constraints such as parallelism and orthogonality, which are likely to be found in most architectural scenes. The approximate corner positions of a building are selected inte...
متن کاملHuman Figure Reconstruction and Modeling from Single Image or Monocular Video Sequence
In this contribution we firstly review some approaches to recover the 3D shape of human figures and the related movements. Then we present an improved and reliable version of an easy approach to recover 3D model of humans using just one frame or a monocular video sequence. A simplification of the camera model based on the collinearity condition is required, due to the absence of stereo view. Th...
متن کاملFast System Matrix Calculation in CT Iterative Reconstruction
Introduction: Iterative reconstruction techniques provide better image quality and have the potential for reconstructions with lower imaging dose than classical methods in computed tomography (CT). However, the computational speed is major concern for these iterative techniques. The system matrix calculation during the forward- and back projection is one of the most time- cons...
متن کامل3D Bilinear Face Model Fitting from Multiple Cameras
3D facial analysis attracts much interest recently due to the fact that it provides solutions for mitigating confounding factors in 2D image analysis, such as pose, illumination. On the other hand, it also provides enriched representation with more discriminative depth information for applications such as expression or identity analysis. In this paper, we investigate 3D face reconstruction base...
متن کامل