• DocumentCode
    1544268
  • Title

    Zebedee: Design of a Spring-Mounted 3-D Range Sensor with Application to Mobile Mapping

  • Author

    Bosse, Michael ; Zlot, Robert ; Flick, Paul

  • Author_Institution
    Autonomous Syst. Lab., CSIRO, Brisbane, QLD, Australia
  • Volume
    28
  • Issue
    5
  • fYear
    2012
  • Firstpage
    1104
  • Lastpage
    1119
  • Abstract
    Three-dimensional perception is a key technology for many robotics applications, including obstacle detection, mapping, and localization. There exist a number of sensors and techniques for acquiring 3-D data, many of which have particular utility for various robotic tasks. We introduce a new design for a 3-D sensor system, constructed from a 2-D range scanner coupled with a passive linkage mechanism, such as a spring. By mounting the other end of the passive linkage mechanism to a moving body, disturbances resulting from accelerations and vibrations of the body propel the 2-D scanner in an irregular fashion, thereby extending the device´s field of view outside of its standard scanning plane. The proposed 3-D sensor system is advantageous due to its mechanical simplicity, mobility, low weight, and relatively low cost. We analyze a particular implementation of the proposed device, which we call Zebedee, consisting of a 2-D time-of-flight laser range scanner rigidly coupled to an inertial measurement unit and mounted on a spring. The unique configuration of the sensor system motivates unconventional and specialized algorithms to be developed for data processing. As an example application, we describe a novel 3-D simultaneous localization and mapping solution in which Zebedee is mounted on a moving platform. Using a motion capture system, we have verified the positional accuracy of the sensor trajectory. The results demonstrate that the six-degree-of-freedom trajectory of a passive spring-mounted range sensor can be accurately estimated from laser range data and industrial-grade inertial measurements in real time and that a quality 3-D point cloud map can be generated concurrently using the same data.
  • Keywords
    SLAM (robots); sensors; 2D time-of-flight laser range scanner; 3D point cloud map quality; 3D simultaneous localization and mapping solution; SLAM; Zebedee; data processing; industrial-grade inertial measurements; inertial measurement unit; mechanical simplicity; mobile mapping; motion capture system; obstacle detection; passive linkage mechanism; robotic tasks; six-degree-of-freedom trajectory; spring-mounted 3D range sensor design; standard scanning plane; three-dimensional perception; Lasers; Simultaneous localization and mapping; Springs; Timing; Trajectory; Mapping; range sensing; simultaneous localization and mapping (SLAM);
  • fLanguage
    English
  • Journal_Title
    Robotics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1552-3098
  • Type

    jour

  • DOI
    10.1109/TRO.2012.2200990
  • Filename
    6220900