• DocumentCode
    1622736
  • Title

    NDBC´s digital directional wave module

  • Author

    Teng, Chung-Chu ; Bouchard, Richard ; Riley, Rodney ; Mettlach, Theodore ; Dinoso, Richard ; Chaffin, Joel

  • Author_Institution
    Nat. Data Buoy Center, NOAA, Stennis Space Center, MS, USA
  • fYear
    2009
  • Firstpage
    1
  • Lastpage
    8
  • Abstract
    The National Data Buoy Center (NDBC) has developed a compact, low power, directional wave measurement system called the Digital Directional Wave Module (DDWM). It represents the latest advance in NDBC´s 30-year history of producing wave measurement systems. The DDWM consists of embedded electronics; a commercial off-the-shelf (COTS) motion sensor; custom, embedded software and hardware; and a mounting plate. The COTS sensor measures the earth´s magnetic flux density and the buoy´s, acceleration and angular rate about three orthogonal axes, aligned with its bow, starboard beam and mast. The module uses the Angular Rate System (ARS) method of determining pitch and roll angles, from which wave directions are derived. Using the same wave-data processing techniques, algorithms, and software as those from earlier NDBC wave systems has reduced development and operating costs and has avoided problems associated with changing data message formats. The DDWM´s small size and weight, compared to previous systems, has reduced shipping costs and eased handling, thereby facilitating safe and efficient at-sea servicing. The module´s high tolerance for extreme environmental conditions has allowed NDBC to loosen its special handling procedures associated with less robust sensors. New quality assurance tests and test equipment were developed for the digital sensor, the integrated processing package, and digital sensor output. This paper presents DDWM´s development strategy, system description, quality assurance, laboratory tests and field tests. Test results show that primary wave parameters from DDWM are within NDBC accuracy standards.
  • Keywords
    oceanographic equipment; ARS method; Angular Rate System method; COTS motion sensor; DDWM; Digital Directional Wave Module; NDBC accuracy standards; NDBC wave systems; National Data Buoy Center; angular rate; commercial off-the-shelf motion sensor; data message formats; digital sensor output; directional wave measurement system; earth magnetic flux density; embedded hardware; embedded software; integrated processing package; mounting plate; orthogonal axes; pitch angle; roll angle; shipping costs; starboard beam; wave parameters; wave-data processing techniques; Costs; Density measurement; Earth; Embedded software; Hardware; History; Magnetic sensors; Power measurement; Quality assurance; System testing;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    OCEANS 2009, MTS/IEEE Biloxi - Marine Technology for Our Future: Global and Local Challenges
  • Conference_Location
    Biloxi, MS
  • Print_ISBN
    978-1-4244-4960-6
  • Electronic_ISBN
    978-0-933957-38-1
  • Type

    conf

  • Filename
    5422386