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Refine and distill: Exploiting cycle-inconsistency and knowledge distillation for unsupervised monocular depth estimation

  • Andrea Pilzer
  • , Stephane Lathuiliere
  • , Nicu Sebe
  • , Elisa Ricci

Résultats de recherche: Le chapitre dans un livre, un rapport, une anthologie ou une collectionContribution à une conférenceRevue par des pairs

Résumé

Nowadays, the majority of state of the art monocular depth estimation techniques are based on supervised deep learning models. However, collecting RGB images with associated depth maps is a very time consuming procedure. Therefore, recent works have proposed deep architectures for addressing the monocular depth prediction task as a reconstruction problem, thus avoiding the need of collecting ground-truth depth. Following these works, we propose a novel self-supervised deep model for estimating depth maps. Our framework exploits two main strategies: Refinement via cycle-inconsistency and distillation. Specifically, first a student network is trained to predict a disparity map such as to recover from a frame in a camera view the associated image in the opposite view. Then, a backward cycle network is applied to the generated image to re-synthesize back the input image, estimating the opposite disparity. A third network exploits the inconsistency between the original and the reconstructed input frame in order to output a refined depth map. Finally, knowledge distillation is exploited, such as to transfer information from the refinement network to the student. Our extensive experimental evaluation demonstrate the effectiveness of the proposed framework which outperforms state of the art unsupervised methods on the KITTI benchmark.

langue originaleAnglais
titreProceedings - 2019 IEEE/CVF Conference on Computer Vision and Pattern Recognition, CVPR 2019
EditeurIEEE Computer Society
Pages9760-9769
Nombre de pages10
ISBN (Electronique)9781728132938
Les DOIs
étatPublié - 1 juin 2019
Modification externeOui
Evénement32nd IEEE/CVF Conference on Computer Vision and Pattern Recognition, CVPR 2019 - Long Beach, États-Unis
Durée: 16 juin 201920 juin 2019

Série de publications

NomProceedings of the IEEE Computer Society Conference on Computer Vision and Pattern Recognition
Volume2019-June
ISSN (imprimé)1063-6919

Une conférence

Une conférence32nd IEEE/CVF Conference on Computer Vision and Pattern Recognition, CVPR 2019
Pays/TerritoireÉtats-Unis
La villeLong Beach
période16/06/1920/06/19

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