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A unified scheme for super-resolution and depth estimation from asymmetric stereoscopic video

  • Jing Zhang
  • , Yang Cao
  • , Zheng Jun Zha
  • , Zhigang Zheng
  • , Chang Wen Chen
  • , Zengfu Wang
  • University of Science and Technology of China
  • CAS - Institute of Intelligent Machines

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

Reconstructing a full-resolution stereoscopic video from an asymmetric stereoscopic video is a challenging task. The existing approaches require depth information, which imposes an additional challenge in data acquisition. In this paper, we propose a novel scheme that is capable of obtaining super-resolution and depth estimation simultaneously from an asymmetric stereoscopic video. The proposed scheme models the video super-resolution and stereo matching with a unified energy function. Then, we apply an alternating optimization method to minimize this energy function, which can be implemented with a two-step algorithm. In the first step we calculate the initial depth map by using a region-based cooperative optimization technique while considering the temporal consistency in video. In the second step we resolve the super-resolution problem under the guidance of the depth information. It is effective because each step benefits from the additional improvement over the previous step. We iteratively update the two steps until stable depth and super-resolution results are obtained. We have conducted a series of experiments on public stereoscopic video sequences to evaluate the performance of the proposed method. Both objective indexes and subjective visual comparisons verify that the proposed scheme can achieve satisfactory super-resolution results and high-quality depth map simultaneously. In particular, the subjective evaluation experiments on a 3-D monitor show that this scheme outperforms others and achieves the best visual sharpness.

Original languageEnglish
Article number6948212
Pages (from-to)479-493
Number of pages15
JournalIEEE Transactions on Circuits and Systems for Video Technology
Volume26
Issue number3
DOIs
StatePublished - Mar 2016

Keywords

  • asymmetric stereoscopic video
  • depth estimation
  • stereo matching
  • super-resolution

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