DocumentCode
632734
Title
Predicting Functional Regions on Objects
Author
Desai, Chaitanya ; Ramanan, D.
fYear
2013
fDate
23-28 June 2013
Firstpage
968
Lastpage
975
Abstract
We revisit the notion of object affordances, an idea that speaks to an object\´s functional properties more than its class label. We study the problem of spatially localizing affordances in the form of 2D segmentation masks annotated with discrete affordance labels. For example, we use affordance masks to denote on what surfaces a person sits, grabs, and looks at when interacting with a variety of everyday objects (such as chairs, bikes, and TVs). We introduce such a functionally-annotated dataset derived from the PASCAL VOC benchmark and empirically evaluate several approaches for predicting such functionally-relevant object regions. We compare "blind" approaches that ignore image data, bottom-up approaches that reason about local surface layout, and top-down approaches that reason about structural constraints between surfaces/regions of objects. We show that the difficulty of functional region prediction varies considerably across objects, and that in general, top-down functional object models do well, though there is much room for improvement.
Keywords
Pascal; image segmentation; object detection; 2D segmentation mask; PASCAL VOC benchmark; affordance mask; discrete affordance label; functionally-relevant object region; local surface layout; object functional property; structural constraint; Benchmark testing; Computational modeling; Data models; Layout; Monitoring; Three-dimensional displays; Training;
fLanguage
English
Publisher
ieee
Conference_Titel
Computer Vision and Pattern Recognition Workshops (CVPRW), 2013 IEEE Conference on
Conference_Location
Portland, OR
Type
conf
DOI
10.1109/CVPRW.2013.141
Filename
6595987
Link To Document