• DocumentCode
    3580227
  • Title

    Sensor based adaptive metric-topological cell decomposition method for semantic annotation of structured environments

  • Author

    Shahbandi, Saeed Gholami ; Astrand, Bjorn ; Philippsen, Roland

  • Author_Institution
    Halmstad Univ., Halmstad, Sweden
  • fYear
    2014
  • Firstpage
    1771
  • Lastpage
    1777
  • Abstract
    A fundamental ingredient for semantic labeling is a reliable method for determining and representing the relevant spatial features of an environment. We address this challenge for planar metric-topological maps based on occupancy grids. Our method detects arbitrary dominant orientations in the presence of significant clutter, fits corresponding line features with tunable resolution, and extracts topological information by polygonal cell decomposition. Real-world case studies taken from the target application domain (autonomous forklift trucks in warehouses) demonstrate the performance and robustness of our method, while results from a preliminary algorithm to extract corridors, and junctions, demonstrate its expressiveness. Contribution of this work starts with the formulation of metric-topological surveying of environment, and a generic n-direction planar representation accompanied with a general method for extracting it from occupancy map. The implementation also includes some semantic labels specific to warehouse like environments.
  • Keywords
    fork lift trucks; mobile robots; robust control; warehouse automation; autonomous forklift trucks; dominant orientation; line feature; n-direction planar representation; occupancy grid; occupancy map; planar metric-topological map; polygonal cell decomposition; preliminary algorithm; relevant spatial feature; robustness; semantic annotation; semantic labeling; sensor based adaptive metric-topological cell decomposition method; structured environment; topological information; tunable resolution; warehouse; Feature extraction; Histograms; Junctions; Labeling; Measurement; Radiography; Semantics;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Automation Robotics & Vision (ICARCV), 2014 13th International Conference on
  • Type

    conf

  • DOI
    10.1109/ICARCV.2014.7064584
  • Filename
    7064584