DocumentCode
3606422
Title
Looking behind a corner using multipath-exploiting UWB radar
Author
Zetik, Rudolf ; Eschrich, Marcus ; Jovanoska, Snezhana ; Thoma, Reiner S.
Author_Institution
Ilmenau Univ. of Technol., Ilmenau, Germany
Volume
51
Issue
3
fYear
2015
fDate
7/1/2015 12:00:00 AM
Firstpage
1916
Lastpage
1926
Abstract
Localization of persons that are hidden behind a corner is important in various security situations when the first responders should not be exposed to any threat. This article demonstrates the feasibility of an ultrawideband multipath-exploitation radar for localization in such scenarios. The approach utilizes multibounce echoes of electromagnetic waves that are scattered by the closest person situated behind a corner. We assume that the person does not carry any tag and does not cooperate with the localization system. The multibounce echoes are reflected and diffracted by the surroundings and make the hidden person visible to an operator that is behind the corner. The location estimation relies only on single-channel time-of-arrival data. Measured data are first processed by a background subtraction algorithm, which reveals the multipath evoked by the person. The multipath echoes are detected by a parallel threshold-based detector. A simple global nearest-neighbor algorithm is used for tracking detected echoes and improving their range estimates. The obtained range estimates are assigned to different physical propagation paths of the electromagnetic waves. The location of the person is estimated by fusing the information of the antenna location with respect to its surroundings and the assigned range estimates. The proposed approach is experimentally verified in a scenario where data are measured in real time by an ultrawideband sensor. Experimental results demonstrate that, depending on the scenario geometry, a walking or calmly standing person can be localized up to several meters behind the corner.
Keywords
channel estimation; electromagnetic wave diffraction; electromagnetic wave propagation; electromagnetic wave reflection; electromagnetic wave scattering; multipath channels; radar antennas; radar detection; sensors; time-of-arrival estimation; ultra wideband radar; antenna; background subtraction algorithm; echo tracking; electromagnetic wave propagation; electromagnetic wave scattering; geometry; localization system; multibounce echo diffraction; multibounce echo reflection; multipath echo detection; multipath-exploiting UWB radar; parallel threshold-based detector; simple global nearest-neighbor algorithm; single-channel time-of-arrival data estimation; ultrawideband multipath-exploitation radar; ultrawideband sensor; Antenna measurements; Antennas; Detectors; Diffraction; Target tracking; Time measurement; Ultra wideband radar;
fLanguage
English
Journal_Title
Aerospace and Electronic Systems, IEEE Transactions on
Publisher
ieee
ISSN
0018-9251
Type
jour
DOI
10.1109/TAES.2015.140303
Filename
7272840
Link To Document