• DocumentCode
    3851113
  • Title

    Analyses of Triaxial Accelerometer Calibration Algorithms

  • Author

    Martin Sipos;Pavel Paces;Jan Rohac;Petr Novacek

  • Author_Institution
    Department of Measurement, Faculty of Electrical Engineering, Czech Technical University in Prague, Prague, Czech Republic
  • Volume
    12
  • Issue
    5
  • fYear
    2012
  • Firstpage
    1157
  • Lastpage
    1165
  • Abstract
    This paper proposes a calibration procedure in order to minimize the process time and cost. It relies on the suggestion of optimal positions, in which the calibration procedure takes place, and on position number optimization. Furthermore, this paper describes and compares three useful calibration algorithms applicable on triaxial accelerometer to determine its mathematical error model without a need to use an expensive and precise calibration means, which is commonly required. The sensor error model (SEM) of triaxial accelerometer consists of three scale-factor errors, three nonorthogonality angles, and three offsets. For purposes of calibration, two algorithms were tested-the Levenberg-Marquardt and the Thin-Shell algorithm. Both were then related to algorithm based on Matlab fminunc function to analyze their efficiency and results. The proposed calibration procedure and applied algorithms were experimentally verified on accelerometers available on market. We performed various analyses of proposed procedure and proved its capability to estimate the parameters of SEM without a need of precise calibration means, with minimum number of iteration, both saving time, workload, and costs.
  • Keywords
    "Calibration","Algorithm design and analysis","Accelerometers","Mathematical model","Position measurement","Gravity","Robot sensing systems"
  • Journal_Title
    IEEE Sensors Journal
  • Publisher
    ieee
  • ISSN
    1530-437X
  • Type

    jour

  • DOI
    10.1109/JSEN.2011.2167319
  • Filename
    6015525