• DocumentCode
    713176
  • Title

    Calibration and measurement processing for ultrasonic indoor mobile robot localization systems

  • Author

    Marton, Lorinc ; Nagy, Csaba ; Biro-Ambrus, Zalan ; Gyorgy, Katalin

  • Author_Institution
    Dept. of Electr. Eng., Sapientia -Hungarian Univ. of Transylvania, Tirgu Mures, Romania
  • fYear
    2015
  • fDate
    17-19 March 2015
  • Firstpage
    131
  • Lastpage
    136
  • Abstract
    This work introduces an indoor localization system for mobile robots using Time-of-Flight measurements between an ultrasound signal emitter mounted on the robot and ultrasonic sensors (anchors) mounted over the workspace of the robot. In the first part of the study a calibration method was proposed for Time-of-Flight measurement based localization systems. The influence of the anchor´s position on localization performance was analyzed to show the necessity of precise calibration. The calibration procedure was formulated as an optimization problem and its efficiency was showed through real measurements. In the second part of the study an Extended Kalman Filter based predict - update type estimator was proposed to increase the measurement rate of the localization system. For the state estimator an omnidirectional robot model was developed which inputs are provided by an Inertial Measurement Unit. Experimental results using a KUKA youBot mobile robotic platform are also presented to show the applicability of the proposed indoor localization method.
  • Keywords
    Kalman filters; calibration; mobile robots; nonlinear filters; optimisation; state estimation; KUKA youBot mobile robotic platform; anchors; calibration method; extended Kalman filter based predict-update type estimator; indoor localization method; inertial measurement unit; measurement rate; mobile robots; omnidirectional robot model; optimization problem; state estimator; time-of-flight measurement based localization systems; time-of-flight measurements; ultrasonic indoor mobile robot localization systems; ultrasonic sensors; ultrasound signal emitter; Acoustics; Calibration; Position measurement; Robot kinematics; Robot sensing systems; Ultrasonic variables measurement; Calibration; Motion estimation; Robot sensing systems; Wireless sensor networks;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Industrial Technology (ICIT), 2015 IEEE International Conference on
  • Conference_Location
    Seville
  • Type

    conf

  • DOI
    10.1109/ICIT.2015.7125088
  • Filename
    7125088