In this work sub-terahertz imaging using Compressive Sensing (CS) techniques for targets placed behind a visibly opaque barrier is demonstrated both experimentally and theoretically. Using a multiplied Schottky diode based millimeter wave source working at 118 GHz, metal cutout targets were illuminated in both reflection and transmission configurations with and without barriers which were made out of drywall. In both modes the image is spatially discretized using laser machined, 10 x 10 pixel metal apertures to demonstrate the technique of compressive sensing. The images were collected by modulating the source and measuring the transmitted flux through the apertures using a Go lay cell. Experimental results were compared to simulations of t...
This paper presents imaging results from measurements of an industrially manufactured composite test...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...
Through-the-wall radar imaging is a research area which has gathered renewed interest with the devel...
The quality control of composite multilayered materials and structures using nondestructive tests is...
In this paper we demonstrate the use of compressive sensing to form an image with an image plane ran...
Compressed sensing (CS) techniques allow for faster imaging when combined with scan architectures, w...
Compressive sensing (CS) is a novel sampling modality, which indicates the signals can be sampled at...
The development of passive and active millimeter wave imaging systems is progressing rapidly fueled ...
Terahertz (THz) imaging traditionally uses pixel-to-pixel mechanical raster scanning, which is slow ...
Terahertz (THz) radiation has unique properties such as non-ionization, energy level matching with m...
Millimeter-wave (MMW) imaging techniques have been used for the detection of concealed weapons and c...
Terahertz (THz) radiation’s properties make it ideal for various imaging applications. However, crea...
Due to the limited number of array detection architectures in the millimeter wave to terahertz regio...
This paper presents imaging results from measurements of an industrially manufactured composite test...
This paper presents imaging results from measurements of an industrially manufactured composite test...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...
Through-the-wall radar imaging is a research area which has gathered renewed interest with the devel...
The quality control of composite multilayered materials and structures using nondestructive tests is...
In this paper we demonstrate the use of compressive sensing to form an image with an image plane ran...
Compressed sensing (CS) techniques allow for faster imaging when combined with scan architectures, w...
Compressive sensing (CS) is a novel sampling modality, which indicates the signals can be sampled at...
The development of passive and active millimeter wave imaging systems is progressing rapidly fueled ...
Terahertz (THz) imaging traditionally uses pixel-to-pixel mechanical raster scanning, which is slow ...
Terahertz (THz) radiation has unique properties such as non-ionization, energy level matching with m...
Millimeter-wave (MMW) imaging techniques have been used for the detection of concealed weapons and c...
Terahertz (THz) radiation’s properties make it ideal for various imaging applications. However, crea...
Due to the limited number of array detection architectures in the millimeter wave to terahertz regio...
This paper presents imaging results from measurements of an industrially manufactured composite test...
This paper presents imaging results from measurements of an industrially manufactured composite test...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...
In this paper we present a single mode active device for sub-millimeter wave line imaging. The illum...