Presentation 2010-10-29
High-resolution UWB Doppler radar interferometric imaging algorithm for multiple moving targets with smoothed pseudo Wigner distribution(Radar Technology,ICSANE 2010 (International Conference on Space, Aeronautical and Navigational Electronics))
Kenshi SAHO, Takuya SAKAMOTO, Toru SATO, Kenichi INOUE, Takeshi FUKUDA,
PDF Download Page PDF download Page Link
Abstract(in Japanese) (See Japanese page)
Abstract(in English) This study proposes a high-resolution UWB (Ultra Wide-Band) Doppler radar imaging algorithm with a small number of antennas. Targets are resolved first in terms of range directions using smoothed pseudo Wigner distribution, and then in terms of angular directions with interferometry. Performance evaluation with numerical simulations and experiments shows the proposed algorithm achieves high-resolution imaging for multiple moving targets. The mean error of the estimated image is 5.2 mm, which corresponds to 1/58 of the nominal resolution determined by the bandwidth.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) UWB Doppler radar / high-resolution imaging / interferometry / smoothed pseudo Wigner distribution
Paper # SANE2010-114
Date of Issue

Conference Information
Committee SANE
Conference Date 2010/10/20(1days)
Place (in Japanese) (See Japanese page)
Place (in English)
Topics (in Japanese) (See Japanese page)
Topics (in English)
Chair
Vice Chair
Secretary
Assistant

Paper Information
Registration To Space, Aeronautical and Navigational Electronics (SANE)
Language ENG
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) High-resolution UWB Doppler radar interferometric imaging algorithm for multiple moving targets with smoothed pseudo Wigner distribution(Radar Technology,ICSANE 2010 (International Conference on Space, Aeronautical and Navigational Electronics))
Sub Title (in English)
Keyword(1) UWB Doppler radar
Keyword(2) high-resolution imaging
Keyword(3) interferometry
Keyword(4) smoothed pseudo Wigner distribution
1st Author's Name Kenshi SAHO
1st Author's Affiliation Dept. of Communications and Computer Eng., Kyoto University()
2nd Author's Name Takuya SAKAMOTO
2nd Author's Affiliation Dept. of Communications and Computer Eng., Kyoto University
3rd Author's Name Toru SATO
3rd Author's Affiliation Dept. of Communications and Computer Eng., Kyoto University
4th Author's Name Kenichi INOUE
4th Author's Affiliation Advanced Technology Research Laboratories, Panasonic Co., Ltd.
5th Author's Name Takeshi FUKUDA
5th Author's Affiliation Advanced Technology Research Laboratories, Panasonic Co., Ltd.
Date 2010-10-29
Paper # SANE2010-114
Volume (vol) vol.110
Number (no) 250
Page pp.pp.-
#Pages 6
Date of Issue