Title :
Human gait classification using microDoppler time-frequency signal representations
Author :
Lyonnet, Bastien ; Ioana, Cornel ; Amin, Moeness G.
Author_Institution :
Signal-Image Dept., Grenoble Inst. of Technol., St. Martin d´´Heres, France
Abstract :
A time-frequency classifier is applied for human gait classification. Time-frequency (t-f) quadratic distributions are used for time-frequency signal representations. Three specific motions are considered, corresponding to three different scenarios of arm motions which describe free and confined arm swings. The microDoppler signature in the time-frequency domain of each motion style is viewed as a feature and is incorporated in a distance-based classifications measured between the test data t-f distribution and the training average t-f distributions. It is shown that the time-frequency classifier performs properly, yielding low probability of classification errors, and its performance is rather insensitive to the type of time-frequency distribution employed. Among the possible distance measures used, which include the Correlation, Bhattacharyya and Kolmogorov, the Euclidean distance provided the best results.
Keywords :
gait analysis; motion compensation; pattern classification; signal representation; time-frequency analysis; arm motions; distance-based classifications; human gait classification; microDoppler signature; microDoppler time-frequency signal representations; time-frequency classifier; time-frequency quadratic distributions; Arm; Doppler radar; Humans; Light scattering; Motion measurement; Radar scattering; Signal representations; Testing; Time frequency analysis; Torso;
Conference_Titel :
Radar Conference, 2010 IEEE
Conference_Location :
Washington, DC
Print_ISBN :
978-1-4244-5811-0
DOI :
10.1109/RADAR.2010.5494489