• DocumentCode
    1773600
  • Title

    Sensitivity-based reconstruction in microwave imaging using near-field calibration measurements

  • Author

    Sheng Tu ; Yifan Zhang ; McCombe, Justin J. ; Nikolova, Natalia K.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., McMaster Univ., Hamilton, ON, Canada
  • fYear
    2014
  • fDate
    8-10 Oct. 2014
  • Firstpage
    81
  • Lastpage
    84
  • Abstract
    The sensitivity-based microwave imaging method requires the incident field distributions in the background medium, which insofar have been derived from analytical or simulation models. However, such models often prove inadequate in near-field imaging due to the complexity of the background and the acquisition setup. Here, we propose a calibration technique to efficiently acquire the necessary field information via measurements of a known calibration object containing a sufficiently small “point” scatterer. Only measurement data is needed to generate the images, i.e., the simulation or analytical incident-field model is replaced by a measurement-based model. The approach is validated through experiments with a planar raster scanning system. Two different tissue mimicking phantoms are imaged: i) dielectric cylinders embedded in a 5-cm thick layer of high-loss dielectric material and ii) tissue phantom containing porcine and bovine meat samples as well as grape inclusions.
  • Keywords
    biological tissues; calibration; computerised instrumentation; dielectric materials; food products; image reconstruction; microwave imaging; phantoms; analytical incident field model; bovine meat samples; dielectric cylinders; dielectric material; grape inclusions; incident field distribution; measurement-based model; near field calibration measurement; near field imaging; planar raster scanning system; porcine meat samples; sensitivity-based microwave imaging method; sensitivity-based reconstruction; size 5 cm; tissue mimicking phantoms; tissue phantom; Analytical models; Calibration; Dielectrics; Microwave imaging; Microwave theory and techniques; Permittivity; Fréchet derivative; microwave imaging; raster scanning; sensitivity analysis; system calibration;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    European Radar Conference (EuRAD), 2014 11th
  • Conference_Location
    Rome
  • Type

    conf

  • DOI
    10.1109/EuRAD.2014.6991212
  • Filename
    6991212