Hossain, Md. Mosharroff (2006) Multi contrast, multi illumination and microwave imaging of 2D inhomogeneous scatterers. Masters thesis, Concordia University.
Preview |
Text (application/pdf)
5MBMR14261.pdf - Accepted Version |
Abstract
In this thesis, we consider the microwave imaging for reconstructing the material properties of inhomogeneous lossy dielectric cylinders using scattered field data. The scattered field is numerically computed using direct/forward method. The scatterer is an inhomogeneous two-dimensional (2D) arbitrary-shaped cylindrical structure containing impurities at any transverse location. The scatterer is immersed in a known dielectric media (like air, water, saline-water etc). The known surrounding dielectric is used as an observation domain whereas the complex scatterer is used as an investigation domain. Unrelated multi sources are used to illuminate the scatterer at different angles for reconstructing the less erroneous complex permittivity profile. Multi-frequency effect with the noise is addressed during the reconstruction of the complex permittivity profile using numerical simulations. The objective function as well as the permittivity profile are computed using an inverse scattering method from the corresponding scattered field. The two-dimensional "Lippmann-Schwinger" integral equation for nonlinear inverse-scattering problem is discretized by the method of moment (MoM)
Divisions: | Concordia University > Gina Cody School of Engineering and Computer Science > Electrical and Computer Engineering |
---|---|
Item Type: | Thesis (Masters) |
Authors: | Hossain, Md. Mosharroff |
Pagination: | x, 110 leaves : ill. ; 29 cm. |
Institution: | Concordia University |
Degree Name: | M.A. Sc. |
Program: | Electrical and Computer Engineering |
Date: | 2006 |
Thesis Supervisor(s): | Sebak, Abdel R |
Identification Number: | LE 3 C66E44M 2006 H67 |
ID Code: | 8964 |
Deposited By: | Concordia University Library |
Deposited On: | 18 Aug 2011 18:40 |
Last Modified: | 26 Oct 2022 23:01 |
Related URLs: |
Repository Staff Only: item control page