A Mathematical Framework to Analyze the Achievable Resolution From Microwave Tomography

PROJECT TITLE :

A Mathematical Framework to Analyze the Achievable Resolution From Microwave Tomography

ABSTRACT:

A mathematical framework is proposed to analyze how totally different parameters have an effect on the achievable resolution from microwave tomography (MWT). This framework makes an attempt to incorporate multiple scattering events within the thing of interest (OI) into its analysis by taking into consideration the impact of the induced total field within the OI. To the present end, a linearized operator, which maps the OI’s permittivity profile to the measured information, is first constructed. The framework then revolves around the amount of the proper singular vectors of this operator, and their spatial frequency contents which will be utilized in reconstruction. Furthermore, this framework is employed to introduce the “best” potential reconstruction that can be achieved in a very given MWT system when imaging a typical OI. This concept can then offer some insights and pointers for MWT system style.

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