• DocumentCode
    65237
  • Title

    Road Geometry Classification by Adaptive Shape Models

  • Author

    Alvarez, Jose M. ; Gevers, Theo ; Diego, Ferran ; Lopez, Antonio M.

  • Author_Institution
    NICTA, Canberra, ACT, Australia
  • Volume
    14
  • Issue
    1
  • fYear
    2013
  • fDate
    Mar-13
  • Firstpage
    459
  • Lastpage
    468
  • Abstract
    Vision-based road detection is important for different applications in transportation, such as autonomous driving, vehicle collision warning, and pedestrian crossing detection. Common approaches to road detection are based on low-level road appearance (e.g., color or texture) and neglect of the scene geometry and context. Hence, using only low-level features makes these algorithms highly depend on structured roads, road homogeneity, and lighting conditions. Therefore, the aim of this paper is to classify road geometries for road detection through the analysis of scene composition and temporal coherence. Road geometry classification is proposed by building corresponding models from training images containing prototypical road geometries. We propose adaptive shape models where spatial pyramids are steered by the inherent spatial structure of road images. To reduce the influence of lighting variations, invariant features are used. Large-scale experiments show that the proposed road geometry classifier yields a high recognition rate of 73.57% ± 13.1, clearly outperforming other state-of-the-art methods. Including road shape information improves road detection results over existing appearance-based methods. Finally, it is shown that invariant features and temporal information provide robustness against disturbing imaging conditions.
  • Keywords
    computer vision; feature extraction; geometry; image classification; lighting; pedestrians; roads; shape recognition; traffic information systems; transportation; adaptive shape models; appearance-based methods; autonomous driving; large-scale experiments; lighting conditions; low-level features; low-level road appearance; pedestrian crossing detection; prototypical road geometries; road geometry classification; road geometry classifier; road homogeneity; road shape information; scene composition analysis; scene geometry; state-of-the-art methods; temporal coherence analysis; transportation; vehicle collision warning; vision-based road detection approach; Adaptation models; Geometry; Hidden Markov models; Lighting; Roads; Shape; Training; GIST; holistic representation; illuminant invariant; image classification; road detection; scene classifier; scene recognition; spatial pyramids; support vector machine;
  • fLanguage
    English
  • Journal_Title
    Intelligent Transportation Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1524-9050
  • Type

    jour

  • DOI
    10.1109/TITS.2012.2221088
  • Filename
    6342913