Title :
Real-time Imaging of Human Bodies with UWB Radars using Walking Motion
Author :
Sakamoto, Takuya ; Sato, Toru
Author_Institution :
Kyoto Univ, Kyoto
Abstract :
UWB (ultra wide-band) pulse radar is a promising candidate for surveillance systems used to prevent crimes and terror. The high-speed "SEABED" (shape estimation algorithm based on bst and extraction of directly scattered waves) imaging algorithm is deployed to apply UWB pulse radar in fields that require realtime operations. The SEABED algorithm is based on a reversible BST (boundary scattering transform) between the target shape and the received data. This transform does not require the iterative calculations needed by other algorithms such as the synthetic aperture method or the domain integral equation method. The SEABED algorithm assumes that omni-directional antennas are scanned to observe the scattered electric field in each location. However, in the field of surveillance systems, scanning antennas are impractical. In this paper, walking motion is used to replace scanning antennas. We propose a new algorithm to estimate the shape of a human body using the data provided by a human body passing stationary antennas.
Keywords :
electromagnetic wave scattering; image motion analysis; radar imaging; search radar; ultra wideband radar; BST; UWB pulse radar; boundary scattering transform; directly scattered waves extraction; human bodies; omni-directional antennas; real-time imaging; scattered electric field; shape estimation algorithm; stationary antennas; surveillance systems; ultra wide-band pulse radar; walking motion; Binary search trees; Humans; Iterative algorithms; Legged locomotion; Radar imaging; Radar scattering; Shape; Surveillance; Transforms; Ultra wideband radar; SEABED algorithm; UWB radar; surveillance system; walking motion;
Conference_Titel :
Ultra-Wideband, 2007. ICUWB 2007. IEEE International Conference on
Conference_Location :
Singapore
Print_ISBN :
978-1-4244-0521-3
Electronic_ISBN :
978-1-4244-0521-3
DOI :
10.1109/ICUWB.2007.4380909