• DocumentCode
    1196609
  • Title

    Advance Path Measurement for Automotive Radar Applications

  • Author

    Tsang, Shiu Hang ; Hall, Peter S. ; Hoare, Edward G. ; Clarke, Nigel J.

  • Author_Institution
    MultiVision Product Group, Verint Syst. Ltd., Hong Kong
  • Volume
    7
  • Issue
    3
  • fYear
    2006
  • Firstpage
    273
  • Lastpage
    281
  • Abstract
    Millimeter-wave automotive radars are currently being used for adaptive cruise control. To extend their application to collision warning and collision avoidance, increased capability is required in the assessment of hazards and the environment. A signal processing scheme called the advance path measurement (APM) algorithm, which extracts the trajectory of the road path ahead of a radar-equipped vehicle, is presented as a step toward increasing current capabilities. A millimeter-wave radar-equipped vehicle with data logging facilities was used to record real-time millimeter-wave radar data. The recorded data were used as the primary input to the algorithm discussed in this paper. The data were signal processed to generate an image, which was then analyzed using image processing techniques to extract road edge features, using thresholding, peak detection, and Hough transformation. The performance of the APM algorithm was examined by comparing the radar-derived radius of curvature with a digital map database, global positioning system (GPS) position, and yaw-rate data. The results obtained from the radar-derived APM algorithm provide an encouraging basis for continuing its development
  • Keywords
    Hough transforms; adaptive control; collision avoidance; feature extraction; millimetre wave devices; road vehicle radar; road vehicles; Global Positioning System position; Hough transformation; adaptive cruise control; advance path measurement; advance path measurement algorithm; collision avoidance; data logging facilities; digital map database; image processing techniques; millimeter-wave automotive radars; peak detection; radar equipped vehicle; road edge feature extraction; signal processing scheme; thresholding; yaw-rate data; Automotive engineering; Data mining; Image edge detection; Millimeter wave measurements; Millimeter wave radar; Millimeter wave technology; Programmable control; Radar applications; Roads; Signal processing algorithms; Adaptive cruise control (ACC); millimeter-wave radar; road path prediction;
  • fLanguage
    English
  • Journal_Title
    Intelligent Transportation Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1524-9050
  • Type

    jour

  • DOI
    10.1109/TITS.2006.880614
  • Filename
    1688101