DocumentCode
2435050
Title
Waveform design for low frequency tomography
Author
Sego, Daniel J. ; Griffiths, Hugh ; Wicks, Michael C.
Author_Institution
Phantom Works, Boeing Co., Seattle, WA, USA
fYear
2010
fDate
8-13 Aug. 2010
Firstpage
230
Lastpage
237
Abstract
There are multiple applications that would benefit from the ability to produce three dimensional, high resolution, imagery collected at low operating frequency; among them remote archeological survey of ruins through foliage, and searching for voids in collapsed structures and underground. High vertical resolution circular SAR requires the use of wide-to-ultra wideband waveforms, a problematic aspect in the modern RF spectral environment, particularly at lower frequencies. RF tomography offers the potential to yield high, 3-dimensional resolution using spectrally sparse, narrowband waveforms simultaneously with operation at frequencies that have demonstrated favorable penetration through intervening dielectric media. In this paper we explore this potential by evaluating minimal spatial support tomographic apertures combining diverse narrowband signals with the form (trajectory) of the monostatic collection aperture. Results are presented in terms of image quality metrics: those frequency combinations that jointly minimize peak and rms voxel sidelobe level, cardinal axis resolution length and voxel volume. It is shown that, generally, the frequency selection is a soft constraint in terms of the achievable resolution and image sidelobe levels; that the tomographic aperture with spatial sampling that is linearly continuous and substantially less than hemispherical yields high spatial resolution, and that there is interaction between the form/shape of the tomographic and the waveform set.
Keywords
radar imaging; synthetic aperture radar; waveform analysis; RF spectral environment; cardinal axis resolution length; circular SAR; frequency selection; image quality metrics; low frequency tomography; minimal spatial support tomographic aperture; narrowband waveform; peak sidelobe level; rms voxel sidelobe level; spatial sampling; voxel volume; waveform design; wide-to-ultra wideband waveform; Apertures; Bandwidth; Geometry; Spatial resolution; Tomography; Trajectory;
fLanguage
English
Publisher
ieee
Conference_Titel
Waveform Diversity and Design Conference (WDD), 2010 International
Conference_Location
Niagara Falls, ON
ISSN
2150-4652
Print_ISBN
978-1-4244-8202-3
Type
conf
DOI
10.1109/WDD.2010.5592595
Filename
5592595
Link To Document