Retracted: Visual Error Correction Method for VR Image of Continuous Aerobics | IEEE Journals & Magazine | IEEE Xplore

Retracted: Visual Error Correction Method for VR Image of Continuous Aerobics


Abstract:

In recent years, with the rapid development of virtual reality technology, the visual error correction of continuous aerobics image in virtual environment is of great val...Show More

Abstract:

In recent years, with the rapid development of virtual reality technology, the visual error correction of continuous aerobics image in virtual environment is of great value to the analysis of Aerobics technology. The main purpose of this paper is to study the visual error correction algorithm of VR image of continuous aerobics. This paper mainly introduces the overview of VR technology, characteristics and aerobics, some algorithms of visual error correction. This article selects a continuous aerobics coach to take a continuous action of aerobics. These photos were modeled by VR, and the VR images of continuous aerobics were made. The visual error correction of X, y, depth direction of continuous aerobics action VR image with savd algorithm, it algorithm and FT algorithm proposed in this paper are compared, and the VR image performance of savd algorithm and it algorithm is compared. The experimental results show that: the errors of savd algorithm, it algorithm and FT algorithm in X direction, Y direction and depth direction of continuous aerobics action VR image without error correction are reduced by 41%, 26%, 14.16%, 31%, 29%, 21%, 72.7%, 41.1%, 35.1%, respectively. In this paper, the effect of savd algorithm in X direction and depth direction error correction is very obvious, in Y direction error correction has some effect, but not obvious, savd algorithm in continuous aerobics action VR image visual error correction effect is better than it algorithm and FT algorithm. The correctness and feasibility of the proposed savd algorithm for visual error correction of continuous aerobics action VR image is verified.
Published in: IEEE Access ( Early Access )
Page(s): 1 - 1
Date of Publication: 01 September 2020
Electronic ISSN: 2169-3536