• DocumentCode
    3605089
  • Title

    Signal Processing Method Based on First-Order Derivative and Multifeature Parameters Combined With Reference Curve for GWRLG

  • Author

    Meng Wei ; Ke-Jun Xu ; Zheng Liu

  • Author_Institution
    Sch. of Electr. & Autom. Eng., Hefei Univ. of Technol., Hefei, China
  • Volume
    64
  • Issue
    12
  • fYear
    2015
  • Firstpage
    3423
  • Lastpage
    3433
  • Abstract
    Guided wave radar level gauge (GWRLG) is widely used to measure level in industrial production. For the signal processing methods commonly adopted of GWRLG, there are some defects in the identification of the surface echo and determination of the positioning point for timing, which results in the measurement being susceptible to noise, having a large blind area and low accuracy. Therefore, a novel signal processing method is proposed to deal with the echo profile. First, the echo profile is calculated by the first-order derivative to highlight its features. Accordingly, the feature parameters are computed and assembled in different ways to constitute judgment conditions for the surface echo. The reference curve is then combined to remove spurious echoes and obtain the surface echo. The point with the minimum slope is selected on the surface echo as the positioning point for timing so as to achieve good linearity. Moving average filtering, interpolation on the positioning point, and median average filtering are utilized to improve the measurement accuracy. A signal processing system is developed to realize the real-time measurement, and the water level calibration and measurement experiments are performed. In the experiments, a three-point calibration scheme is proposed. The developed system reduces the blind area from 25-30 to 10-15 cm and solves the problem that the surface echo cannot be identified due to its small amplitude for common GWRLG. The actual measurement error is less than 1 cm in the case that the theoretical error is 2.790-4.185 cm, and the measurement results are satisfactory for industrial applications.
  • Keywords
    assembling; calibration; filtering theory; gauges; interpolation; level measurement; measurement errors; radar equipment; signal processing; GWRLG; assembling; first-order derivative; first-order derivative calculation; guided wave radar level gauge; industrial production; interpolation; level measurement; measurement error; median average filtering; multifeature parameter; positioning point determination; signal processing method; size 10 cm to 15 cm; size 2.790 cm to 4.185 cm; size 25 cm to 30 cm; spurious echo removal; surface echo identification; three-point calibration scheme; water level calibration; Level measurement; Measurement techniques; Process control; Radar; Signal processing; Time-domain analysis; Feature parameters; first-order derivative; guided wave radar level gauge (GWRLG); positioning point; reference curve; signal processing; surface echo; surface echo.;
  • fLanguage
    English
  • Journal_Title
    Instrumentation and Measurement, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9456
  • Type

    jour

  • DOI
    10.1109/TIM.2015.2465671
  • Filename
    7229281