DocumentCode :
3019317
Title :
Efficient object detection and segmentation with a cascaded Hough Forest ISM
Author :
Rematas, Konstantinos ; Leibe, Bastian
Author_Institution :
ESAT-PSI, K.U. Leuven, Leuven, Belgium
fYear :
2011
fDate :
6-13 Nov. 2011
Firstpage :
966
Lastpage :
973
Abstract :
Visual pedestrian/car detection is very important for mobile robotics in complex outdoor scenarios. In this paper, we propose two improvements to the popular Hough Forest object detection framework. We show how this framework can be extended to efficiently infer precise probabilistic segmentations for the object hypotheses and how those segmentations can be used to improve the final hypothesis selection. Our approach benefits from the dense sampling of a Hough Forest detector, which results in qualitatively better segmentations than previous voting based methods. We show that, compared to previous approaches, the dense feature sampling necessitates several adaptations to the segmentation framework and propose an improved formulation. In addition, we propose an efficient cascaded voting scheme that significantly reduces the effort of the Hough voting stage without loss in accuracy. We quantitatively evaluate our approach on several challenging sequences, reaching state-of-the-art performance and showing the effectiveness of the proposed framework.
Keywords :
image segmentation; mobile robots; object detection; robot vision; sampling methods; Hough Forest ISM; Hough voting; car detection; cascaded voting scheme; dense feature sampling; implicit shape model; mobile robotics; object detection; object segmentation; probabilistic segmentation; visual pedestrian; Detectors; Feature extraction; Image segmentation; Probabilistic logic; Training; Vegetation; Visualization;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Computer Vision Workshops (ICCV Workshops), 2011 IEEE International Conference on
Conference_Location :
Barcelona
Print_ISBN :
978-1-4673-0062-9
Type :
conf
DOI :
10.1109/ICCVW.2011.6130356
Filename :
6130356
Link To Document :
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